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Lapouge K Perozzo R Iwaszkiewicz J Bertelli C Zoete V Michielin O Scapozza L Haas D., In Press. RNA pentaloop structures as effective targets of regulators belonging to the RsmA/CsrA protein family.
RNA Biology
10(6) p. 12. [Pubmed]
Haas D., 2012. Captivating titles and award-winning labels to promote premium products of microbiology.
FEMS Microbiology Reviews
36(2) pp. 267-268. [DOI]
[Web of Science]
[Pubmed]
Huang J., Sonnleitner E., Ren B., Xu Y., Haas D., 2012. Catabolite repression control of pyocyanin biosynthesis at an intersection of primary and secondary metabolism in Pseudomonas aeruginosa.
Applied and Environmental Microbiology
78(14) pp. 5016-5020. [DOI]
[Web of Science]
[Pubmed]
Lalaouna D., Fochesato S., Sanchez L., Schmitt-Kopplin P., Haas D., Heulin T., Achouak W., 2012. Phenotypic switching in Pseudomonas brassicacearum involves GacS- and GacA-dependent Rsm small RNAs.
Applied and Environmental Microbiology
78(6) pp. 1658-1665. [DOI]
[Web of Science]
[Pubmed]
Sonnleitner E., Valentini M., Wenner N., Haichar Fel Z, Haas D., Lapouge K., 2012. Novel targets of the CbrAB/Crc carbon catabolite control system revealed by transcript abundance in Pseudomonas aeruginosa.
PLoS One
7(10) pp. e44637. [Document]
[DOI]
[Web of Science]
[Pubmed]
Takeuchi K., Yamada K., Haas D., 2012. ppGpp controlled by the Gac/Rsm regulatory pathway sustains biocontrol activity in Pseudomonas fluorescens CHA0.
Molecular Plant-microbe Interactions
25(11) pp. 1440-1449. [DOI]
[Web of Science]
[Pubmed]
Abdou L., Chou H.T., Haas D., Lu C.D., 2011. Promoter recognition and activation by the global response regulator CbrB in Pseudomonas aeruginosa.
Journal of Bacteriology
193(11) pp. 2784-2792. [DOI]
[Web of Science]
[Pubmed]
Haas D., 2011. On the virtues and dangers of models.
FEMS Microbiology Reviews
35(1) pp. 1-2. [DOI]
[Web of Science]
[Pubmed]
Lischer S., Körner E., Balazs D.J., Shen D., Wick P., Grieder K., Haas D., Heuberger M., Hegemann D., 2011. Antibacterial burst-release from minimal Ag-containing plasma polymer coatings.
Journal of the Royal Society Interface
8(60) pp. 1019-1030. [DOI]
[Web of Science]
[Pubmed]
Pérez-Martínez I., Haas D., 2011. Azithromycin inhibits expression of the GacA-dependent small RNAs RsmY and RsmZ in Pseudomonas aeruginosa.
Antimicrobial Agents and Chemotherapy
55(7) pp. 3399-3405. [DOI]
[Web of Science]
[Pubmed]
Sonnleitner E., Gonzalez N., Sorger-Domenigg T., Heeb S., Richter A.S., Backofen R., Williams P., Hüttenhofer A., Haas D., Bläsi U., 2011. The small RNA PhrS stimulates synthesis of the Pseudomonas aeruginosa quinolone signal.
Molecular Microbiology
80(4) pp. 868-885. [DOI]
[Web of Science]
[Pubmed]
Sonnleitner E., Haas D., 2011. Small RNAs as regulators of primary and secondary metabolism in Pseudomonas species.
Applied Microbiology and Biotechnology
91(1) pp. 63-79. [DOI]
[Web of Science]
[Pubmed]
Haas D., 2010. On the expanding, then contracting scope of scientific publications.
FEMS Microbiology Reviews
34(1) pp. 1-2. [DOI]
[Web of Science]
[Pubmed]
Humair B., Wackwitz B., Haas D., 2010. GacA-controlled activation of promoters for small RNA genes in Pseudomonas fluorescens.
Applied and Environmental Microbiology
76(5) pp. 1497-1506. [DOI]
[Web of Science]
[Pubmed]
Lee X., Fox A., Sufrin J., Henry H., Majcherczyk P., Haas D., Reimmann C., 2010. Identification of the biosynthetic gene cluster for the Pseudomonas aeruginosa antimetabolite L-2-amino-4-methoxy-trans-3-butenoic acid.
Journal of Bacteriology
192(16) pp. 4251-4255. [DOI]
[Web of Science]
[Pubmed]
Sonnleitner E., González N., Haas D., 2010. Small RNAs in Pseudomonas spp. pp. 3-28 in Ramos J.-L., Filloux A. (eds.) Pseudomonas: molecular microbiology, infection and biodiversity. Springer, Dordrecht. [DOI]
Frangipani E., 2009. Strategies of "Pseudomonas aeruginosa" to overcome copper limitation. 136 p., Université de Lausanne, Faculté de biologie et médecine, Haas D. (dir.).
Frangipani E., Haas D., 2009. Copper acquisition by the SenC protein regulates aerobic respiration in Pseudomonas aeruginosa PAO1.
FEMS microbiology letters
298(2) pp. 234-240. [DOI]
[Web of Science]
[Pubmed]
Humair B., 2009. Regulation of the Gac/Rsm pathway in "Pseudomonas fluorescens" CHA0. 113 p., Université de Lausanne, Faculté de biologie et médecine, Haas D. (dir.).
Humair B., González N., Mossialos D., Reimmann C., Haas D., 2009. Temperature-responsive sensing regulates biocontrol factor expression in Pseudomonas fluorescens CHA0.
The ISME Journal
3(8) pp. 955-965. [DOI]
[Web of Science]
[Pubmed]
Sonnleitner E., Abdou L., Haas D., 2009. Small RNA as global regulator of carbon catabolite repression in Pseudomonas aeruginosa.
Proceedings of the National Academy of Sciences of the United States of America
106(51) pp. 21866-21871. [DOI]
[Web of Science]
[Pubmed]
Takeuchi K., Kiefer P., Reimmann C., Keel C., Dubuis C., Rolli J., Vorholt J.A., Haas D., 2009. Small RNA-dependent expression of secondary metabolism is controlled by Krebs cycle function in Pseudomonas fluorescens.
The Journal of biological chemistry
284(50) pp. 34976-34985. [DOI]
[Web of Science]
[Pubmed]
Fox A., Haas D., Reimmann C., Heeb S., Filloux A., Voulhoux R., 2008. Emergence of secretion-defective sublines of Pseudomonas aeruginosa PAO1 resulting from spontaneous mutations in the vfr global regulatory gene.
Applied and environmental microbiology
74(6) pp. 1902-1908. [DOI]
[Web of Science]
[Pubmed]
Frangipani E., Slaveykova V.I., Reimmann C., Haas D., 2008. Adaptation of aerobically growing Pseudomonas aeruginosa to copper starvation.
Journal of bacteriology
190(20) pp. 6706-6717. [DOI]
[Web of Science]
[Pubmed]
González N., Heeb S., Valverde C., Kay E., Reimmann C., Junier T., Haas D., 2008. Genome-wide search reveals a novel GacA-regulated small RNA in Pseudomonas species.
BMC genomics
9 p. 167. [Document]
[DOI]
[Web of Science]
[Pubmed]
Lapouge K., Dubuis C., Haas D., 2008. Quorum sensing regulation in the biocontrol strain Pseudomonas fluorescens CHA0. p. 6 in Lorito M., Woo S.L., Scala F. (eds.) Biology of Plant-Microbe Interactions. International Society for Molecular Plant-Microbe Interactions, St. Paul, MM.
Lapouge K., Schubert M., Allain F.H., Haas D., 2008. Gac/Rsm signal transduction pathway of gamma-proteobacteria: from RNA recognition to regulation of social behaviour.
Molecular Microbiology
67(2) pp. 241-253. [DOI]
[Web of Science]
[Pubmed]
Valverde C., Haas D., 2008. Small RNAs controlled by two-component systems.
Advances in experimental medicine and biology
631 pp. 54-79. [Web of Science]
[Pubmed]
Dubuis C., Haas D., 2007. Cross-species GacA-controlled induction of antibiosis in pseudomonads.
Applied and Environmental Microbiology
73(2) pp. 650-654. [DOI]
[Web of Science]
[Pubmed]
Dubuis C., Keel C., Haas D., 2007. Dialogues of root-colonizing biocontrol pseudomonads.
European Journal of Plant Pathology
119(3) pp. 311-328. [DOI]
[Web of Science]
González N., 2007. Identification of small RNAs in Pseudomonas species. 165 p., Université de Lausanne, Faculté de biologie et médecine, Haas D. (dir.).
Lapouge K., Sineva E., Lindell M., Starke K., Baker C.S., Babitzke P., Haas D., 2007. Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens.
Molecular Microbiology
66(2) pp. 341-356. [DOI]
[Web of Science]
[Pubmed]
Ramstedt M., Houriet R., Mossialos D., Haas D., Mathieu H.J., 2007. Wet chemical silver treatment of endotracheal tubes to produce antibacterial surfaces.
Journal of Biomedical Materials Research. Part B, Applied Biomaterials
83(1) pp. 169-180. [DOI]
[Web of Science]
[Pubmed]
Schubert M., Lapouge K., Duss O., Oberstrass F.C., Jelesarov I., Haas D., Allain F.H., 2007. Molecular basis of messenger RNA recognition by the specific bacterial repressing clamp RsmA/CsrA.
Nature Structural and Molecular Biology
14(9) pp. 807-813. [DOI]
[Web of Science]
[Pubmed]
Storz G., Haas D., 2007. A guide to small RNAs in microorganisms.
Current Opinion in Microbiology
10(2) pp. 93-95. [DOI]
[Web of Science]
Dubuis C., Rolli J., Lutz M., Défago G., Haas D., 2006. Thiamine-auxotrophic mutants of Pseudomonas fluorescens CHA0 are defective in cell-cell signaling and biocontrol factor expression.
Applied and Environmental Microbiology
72(4) pp. 2606-2613. [DOI]
[Web of Science]
[Pubmed]
Haas D., 2006. Cost of cell-cell signalling in Pseudomonas aeruginosa: why it can pay to be signal-blind.
Nature Reviews. Microbiology
4(7) pp. 562; author reply 562. [DOI]
[Web of Science]
[Pubmed]
Heeb S., Kuehne S.A., Bycroft M., Crivii S., Allen M.D., Haas D., Cámara M., Williams P., 2006. Functional analysis of the post-transcriptional regulator RsmA reveals a novel RNA-binding site.
Journal of Molecular Biology
355(5) pp. 1026-1036. [DOI]
[Web of Science]
[Pubmed]
Heurlier K., Dénervaud V., Haas D., 2006. Impact of quorum sensing on fitness of Pseudomonas aeruginosa.
International Journal of Medical Microbiology
296(2-3) pp. 93-102. [DOI]
[Web of Science]
[Pubmed]
Kay E., Humair B., Dénervaud V., Riedel K., Spahr S., Eberl L., Valverde C., Haas D., 2006. Two GacA-dependent small RNAs modulate the quorum-sensing response in Pseudomonas aeruginosa.
Journal of Bacteriology
188(16) pp. 6026-6033. [DOI]
[Web of Science]
[Pubmed]
Kay E., Reimmann C., Haas D., 2006. Small RNAs in bacterialcell-cell communication.
Microbe
1(2) pp. 63-69. [url editor site]
Dubuis C., 2005. Cell-cell communication in the biocontrol strain Pseudomonas fluorescens CHA0. 99 p., Université de Lausanne, Faculté de biologie et médecine, Haas D. (dir.).
Haas D., 2005. Biocontrol genome deciphered.
Nature Biotechnology
23(7) pp. 823-824. [DOI]
[Web of Science]
[Pubmed]
Haas D., Défago G., 2005. Biological control of soil-borne pathogens by fluorescent pseudomonads.
Nature Reviews. Microbiology
3(4) pp. 307-319. [DOI]
[Web of Science]
[Pubmed]
Heeb S., Valverde C., Gigot-Bonnefoy C., Haas D., 2005. Role of the stress sigma factor RpoS in GacA/RsmA-controlled secondary metabolism and resistance to oxidative stress in Pseudomonas fluorescens CHA0.
FEMS Microbiology Letters
243(1) pp. 251-258. [DOI]
[Web of Science]
[Pubmed]
Heurlier K., Dénervaud V., Haenni M., Guy L., Krishnapillai V., Haas D., 2005. Quorum-sensing-negative (lasR) mutants of Pseudomonas aeruginosa avoid cell lysis and death.
Journal of Bacteriology
187(14) pp. 4875-4883. [DOI]
[Web of Science]
[Pubmed]
Kay E., Dubuis C., Haas D., 2005. Three small RNAs jointly ensure secondary metabolism and biocontrol in Pseudomonas fluorescens CHA0.
Proceedings of the National Academy of Sciences of the United States of America
102(47) pp. 17136-17141. [DOI]
[Web of Science]
[Pubmed]
Michel L., 2005. Pyochelin-mediated signalling in Pseudomonas aeruginosa. 119 p., Université de Lausanne, Faculté de biologie et médecine, Haas D. (dir.).
Reimmann C., Valverde C., Kay E., Haas D., 2005. Posttranscriptional repression of GacS/GacA-controlled genes by the RNA-binding protein RsmE acting together with RsmA in the biocontrol strain Pseudomonas fluorescens CHA0.
Journal of Bacteriology
187(1) pp. 276-285. [DOI]
[Web of Science]
[Pubmed]
Siddiqui I.A., Haas D., Heeb S., 2005. Extracellular protease of Pseudomonas fluorescens CHA0, a biocontrol factor with activity against the root-knot nematode Meloidogyne incognita.
Applied and Environmental Microbiology
71(9) pp. 5646-5649. [DOI]
[Web of Science]
[Pubmed]
Dénervaud V., TuQuoc P., Blanc D., Favre-Bonté S., Krishnapillai V., Reimmann C., Haas D., van Delden C., 2004. Characterization of cell-to-cell signaling-deficient Pseudomonas aeruginosa strains colonizing intubated patients.
Journal of Clinical Microbiology
42(2) pp. 554-562. [DOI]
[Web of Science]
[Pubmed]
Haas D., Reimmann C., Valverde C., 2004. Common mechanisms in beneficial and deleterious host-microbe interactions. pp. 537-541 in Tikhonovich I., Lugtenberg B., Provorov N. (eds.) Molecular plant-microbe interactions: new bridges between past and future.
Biology of Plant-microbe interactions
4. St. Paul, International Society for Plant-Microbe Interactions, St. Petersburg, Russia.
Haas D., Reimmann C., Valverde C., 2004. Common mechanisms in beneficial and deleterious host-microbe interactions. pp. 537-541 in Tikhonovich I., Lugtenberg B., Provorov N. (eds.) Molecular plant-microbe interactions: new bridges between past and future.
Biology of Plant-microbe interactions
4. International Soc. for Molecular Plant-Microbe Interactions, St. Paul, Minnesota, USA.
Heeb S., Heurlier K., Valverde C., Cámara M., Haas D., Williams P., 2004. Post-transcriptional regulation in Pseudomonas spp. via the Gac/Rsm regulatory network. pp. 239-255 in Ramos J.L. (eds.) Pseudomonas : Virulence and gene regulation. Kluwer, Boston.
Heurlier K., Williams F., Heeb S., Dormond C., Pessi G., Singer D., Cámara M., Williams P., Haas D., 2004. Positive control of swarming, rhamnolipid synthesis, and lipase production by the posttranscriptional RsmA/RsmZ system in Pseudomonas aeruginosa PAO1.
Journal of Bacteriology
186(10) pp. 2936-2945. [DOI]
[Web of Science]
[Pubmed]
Pessi G., Haas D., 2004. Cyanogenesis. pp. 671-686 in Ramos J.L. (eds.) Pseudomonas : Biosynthesis of macromolecules and molecular metabolism. Kluwer, Boston.
Reimmann C., Patel H.M., Walsh C.T., Haas D., 2004. PchC thioesterase optimizes nonribosomal biosynthesis of the peptide siderophore pyochelin in Pseudomonas aeruginosa.
Journal of Bacteriology
186(19) pp. 6367-6373. [DOI]
[Web of Science]
[Pubmed]
Sekowska A., Dénervaud V., Ashida H., Michoud K., Haas D., Yokota A., Danchin A., 2004. Bacterial variations on the methionine salvage pathway.
BMC Microbiology
4 p. 9. [Document]
[DOI]
[Web of Science]
[Pubmed]
Valverde C., Lindell M., Wagner E.G., Haas D., 2004. A repeated GGA motif is critical for the activity and stability of the riboregulator RsmY of Pseudomonas fluorescens.
Journal of Biological Chemistry
279(24) pp. 25066-25074. [DOI]
[Web of Science]
[Pubmed]
Gaille C., Reimmann C., Haas D., 2003. Isochorismate synthase (PchA), the first and rate-limiting enzyme in salicylate biosynthesis of Pseudomonas aeruginosa.
Journal of Biological Chemistry
278(19) pp. 16893-16898. [DOI]
[Web of Science]
[Pubmed]
Haas D., Keel C., 2003. Regulation of antibiotic production in root-colonizing Peudomonas spp. and relevance for biological control of plant disease.
Annual Review of Phytopathology
41 pp. 117-153. [DOI]
[Web of Science]
[Pubmed]
Heurlier K., Dénervaud V., Pessi G., Reimmann C., Haas D., 2003. Negative control of quorum sensing by RpoN (sigma54) in Pseudomonas aeruginosa PAO1.
Journal of Bacteriology
185(7) pp. 2227-2235. [DOI]
[Web of Science]
[Pubmed]
Mascher F., Schnider-Keel U., Haas D., Défago G., Moënne-Loccoz Y., 2003. Persistence and cell culturability of biocontrol strain Pseudomonas fluorescens CHA0 under plough pan conditions in soil and influence of the anaerobic regulator gene anr.
Environmental Microbiology
5(2) pp. 103-115. [DOI]
[Web of Science]
[Pubmed]
Valverde C., Heeb S., Keel C., Haas D., 2003. RsmY, a small regulatory RNA, is required in concert with RsmZ for GacA-dependent expression of biocontrol traits in Pseudomonas fluorescens CHA0.
Molecular Microbiology
50(4) pp. 1361-1379. [DOI]
[Web of Science]
[Pubmed]
Zuber S., Carruthers F., Keel C., Mattart A., Blumer C., Pessi G., Gigot-Bonnefoy C., Schnider-Keel U., Heeb S., Reimmann C., Haas D., 2003. GacS sensor domains pertinent to the regulation of exoproduct formation and to the biocontrol potential of Pseudomonas fluorescens CHA0.
Molecular Plant-Microbe Interactions
16(7) pp. 634-644. [DOI]
[Web of Science]
[Pubmed]
Gaille C., Kast P., Haas D., 2002. Salicylate biosynthesis in Pseudomonas aeruginosa. Purification and characterization of PchB, a novel bifunctional enzyme displaying isochorismate pyruvate-lyase and chorismate mutase activities.
Journal of Biological Chemistry
277(24) pp. 21768-21775. [DOI]
[Web of Science]
[Pubmed]
Haas D., Keel C., Reimmann C., 2002. Signal transduction in plant-beneficial rhizobacteria with biocontrol properties.
Antonie Van Leeuwenhoek
81(1-4) pp. 385-395. [DOI]
[Web of Science]
[Pubmed]
Heeb S., Blumer C., Haas D., 2002. Regulatory RNA as mediator in GacA/RsmA-dependent global control of exoproduct formation in Pseudomonas fluorescens CHA0.
Journal of Bacteriology
184(4) pp. 1046-1056. [DOI]
[Web of Science]
[Pubmed]
Keel C., Ucurum Z., Michaux P., Adrian M., Haas D., 2002. Deleterious impact of a virulent bacteriophage on survival and biocontrol activity of Pseudomonas fluorescens strain CHAO in natural soil.
Molecular Plant-microbe Interactions
15(6) pp. 567-576. [DOI]
[Web of Science]
[Pubmed]
Mascher F., Moënne-Loccoz Y., Schnider-Keel U., Keel C., Haas D., Défago G., 2002. Inactivation of the regulatory gene algU or gacA can affect the ability of biocontrol Pseudomonas fluorescens CHA0 to persist as culturable cells in nonsterile soil.
Applied and Environmental Microbiology
68(4) pp. 2085-2088. [DOI]
[Web of Science]
[Pubmed]
Notz R., Maurhofer M., Dubach H., Haas D., Défago G., 2002. Fusaric acid-producing strains of Fusarium oxysporum alter 2,4-diacetylphloroglucinol biosynthetic gene expression in Pseudomonas fluorescens CHA0 in vitro and in the rhizosphere of wheat.
Applied and Environmental Microbiology
68(5) pp. 2229-2235. [DOI]
[Web of Science]
[Pubmed]
Reimmann C., Ginet N., Michel L., Keel C., Michaux P., Krishnapillai V., Zala M., Heurlier K., Triandafillu K., Harms H., Défago G., Haas D., 2002. Genetically programmed autoinducer destruction reduces virulence gene expression and swarming motility in Pseudomonas aeruginosa PAO1.
Microbiology
148(Pt 4) pp. 923-932. [Web of Science]
[Pubmed]
Berger B., Haas D., 2001. Transposase and cointegrase: specialized transposition proteins of the bacterial insertion sequence IS21 and related elements.
Cellular and Molecular Life Sciences
58(3) pp. 403-419. [DOI]
[Web of Science]
[Pubmed]
Bull C.T., Duffy B., Voisard C., Défago G., Keel C., Haas D., 2001. Characterization of spontaneous gacS and gacA regulatory mutants of Pseudomonas fluorescens biocontrol strain CHAO.
Antonie Van Leeuwenhoek
79(3-4) pp. 327-336. [DOI]
[Web of Science]
[Pubmed]
Heeb S., Haas D., 2001. Regulatory roles of the GacS/GacA two-component system in plant-associated and other gram-negative bacteria.
Molecular Plant-microbe Interactions
14(12) pp. 1351-1363. [DOI]
[Web of Science]
[Pubmed]
Mauch F., Mauch-Mani B., Gaille C., Kull B., Haas D., Reimmann C., 2001. Manipulation of salicylate content in Arabidopsis thaliana by the expression of an engineered bacterial salicylate synthase.
Plant Journal
25(1) pp. 67-77. [DOI]
[Web of Science]
[Pubmed]
Nishijyo T., Haas D., Itoh Y., 2001. The CbrA-CbrB two-component regulatory system controls the utilization of multiple carbon and nitrogen sources in Pseudomonas aeruginosa.
Molecular microbiology
40(4) pp. 917-31. [DOI]
[Web of Science]
[Pubmed]
Notz R., Maurhofer M., Schnider-Keel U., Duffy B., Haas D., Défago G., 2001. Biotic Factors Affecting Expression of the 2,4-Diacetylphloroglucinol Biosynthesis Gene phlA in Pseudomonas fluorescens Biocontrol Strain CHA0 in the Rhizosphere.
Phytopathology
91(9) pp. 873-881. [DOI]
[Web of Science]
[Pubmed]
Pessi G., Blumer C., Haas D., 2001. lacZ fusions report gene expression, don't they?
Microbiology
147(Pt 8) pp. 1993-1995. [Web of Science]
[Pubmed]
Pessi G., Haas D., 2001. Dual control of hydrogen cyanide biosynthesis by the global activator GacA in Pseudomonas aeruginosa PAO1.
FEMS Microbiology Letters
200(1) pp. 73-78. [DOI]
[Web of Science]
[Pubmed]
Pessi G., Williams F., Hindle Z., Heurlier K., Holden M.T., Cámara M., Haas D., Williams P., 2001. The global posttranscriptional regulator RsmA modulates production of virulence determinants and N-acylhomoserine lactones in Pseudomonas aeruginosa.
Journal of Bacteriology
183(22) pp. 6676-6683. [DOI]
[Web of Science]
[Pubmed]
Reimmann C., Patel H.M., Serino L., Barone M., Walsh C.T., Haas D., 2001. Essential PchG-dependent reduction in pyochelin biosynthesis of Pseudomonas aeruginosa.
Journal of Bacteriology
183(3) pp. 813-820. [DOI]
[Web of Science]
[Pubmed]
Schnider-Keel U., Lejbølle K.B., Baehler E., Haas D., Keel C., 2001. The sigma factor AlgU (AlgT) controls exopolysaccharide production and tolerance towards desiccation and osmotic stress in the biocontrol agent Pseudomonas fluorescens CHA0.
Applied and Environmental Microbiology
67(12) pp. 5683-5693. [DOI]
[Web of Science]
[Pubmed]
Blumer C., Haas D., 2000. Iron regulation of the hcnABC genes encoding hydrogen cyanide synthase depends on the anaerobic regulator ANR rather than on the global activator GacA in Pseudomonas fluorescens CHA0.
Microbiology
146(10) pp. 2417-2424. [Web of Science]
[Pubmed]
Blumer C., Haas D., 2000. Mechanism, regulation, and ecological role of bacterial cyanide biosynthesis.
Archives of Microbiology
173(3) pp. 170-177. [DOI]
[Web of Science]
[Pubmed]
Blumer C., Haas D., 2000. Multicopy suppression of a gacA mutation by the infC operon in Pseudomonas fluorescens CHA0: competition with the global translational regulator RsmA.
FEMS Microbiology Letters
187(1) pp. 53-58. [DOI]
[Web of Science]
[Pubmed]
Haas D., Blumer C., Keel C., 2000. Biocontrol ability of fluorescent pseudomonads genetically dissected: importance of positive feedback regulation.
Current Opinion in Biotechnology
11(3) pp. 290-297. [DOI]
[Web of Science]
[Pubmed]
Heeb S., Itoh Y., Nishijyo T., Schnider U., Keel C., Wade J., Walsh U., O'Gara F., Haas D., 2000. Small, stable shuttle vectors based on the minimal pVS1 replicon for use in gram-negative, plant-associated bacteria.
Molecular Plant-microbe Interactions
13(2) pp. 232-237. [DOI]
[Web of Science]
[Pubmed]
Pessi G., Haas D., 2000. Transcriptional control of the hydrogen cyanide biosynthetic genes hcnABC by the anaerobic regulator ANR and the quorum-sensing regulators LasR and RhlR in Pseudomonas aeruginosa.
Journal of Bacteriology
182(24) pp. 6940-6949. [DOI]
[Web of Science]
[Pubmed]
Schnider-Keel U., Seematter A., Maurhofer M., Blumer C., Duffy B., Gigot-Bonnefoy C., Reimmann C., Notz R., Défago G., Haas D., Keel C., 2000. Autoinduction of 2,4-diacetylphloroglucinol biosynthesis in the biocontrol agent Pseudomonas fluorescens CHA0 and repression by the bacterial metabolites salicylate and pyoluteorin.
Journal of Bacteriology
182(5) pp. 1215-1225. [DOI]
[Web of Science]
[Pubmed]
Seitz T., Berger B., Nguyen V.T., Tricot C., Villeret V., Schmid S., Stalon V., Haas D., 2000. Linker insertion mutagenesis based on IS21 transposition: isolation of an AMP-insensitive variant of catabolic ornithine carbamoyltransferase from Pseudomonas aeruginosa.
Protein Engineering
13(5) pp. 329-337. [DOI]
[Web of Science]
[Pubmed]
Blumer C., Heeb S., Pessi G., Haas D., 1999. Global GacA-steered control of cyanide and exoprotease production in Pseudomonas fluorescens involves specific ribosome binding sites.
Proceedings of the National Academy of Sciences of the United States of America
96(24) pp. 14073-14078. [DOI]
[Web of Science]
[Pubmed]
Højberg O., Schnider U., Winteler H.V., Sørensen J., Haas D., 1999. Oxygen-sensing reporter strain of Pseudomonas fluorescens for monitoring the distribution of low-oxygen habitats in soil.
Applied and Environmental Microbiology
65(9) pp. 4085-4093. [Web of Science]
[Pubmed]
Lu C.D., Winteler H., Abdelal A., Haas D., 1999. The ArgR regulatory protein, a helper to the anaerobic regulator ANR during transcriptional activation of the arcD promoter in Pseudomonas aeruginosa.
Journal of Bacteriology
181(8) pp. 2459-2464. [Web of Science]
[Pubmed]
Schmid S., Berger B., Haas D., 1999. Target joining of duplicated insertion sequence IS21 is assisted by IstB protein in vitro.
Journal of Bacteriology
181(7) pp. 2286-2289. [Web of Science]
[Pubmed]
Beyeler M., Keel C., Michaux P., Haas D., 1998. Enhanced production of indole-3-acetic acid by a genetically modified strain of Pseudomonas fluorescens CHA0 affects root growth of cucumber but does not improve protection of the plant against Pythium root rot.
FEMS Microbiology Ecology
28(3) pp. 225-233. [DOI]
[Web of Science]
Laville J., Blumer C., Von Schroetter C., Gaia V., Défago G., Keel C., Haas D., 1998. Characterization of the hcnABC gene cluster encoding hydrogen cyanide synthase and anaerobic regulation by ANR in the strictly aerobic biocontrol agent Pseudomonas fluorescens CHA0.
Journal of Bacteriology
180(12) pp. 3187-3196. [Pubmed]
Maurhofer M., Reimmann C., Schmidli-Sacherer P., Heeb S., Haas D., Défago G., 1998. Salicylic Acid Biosynthetic Genes Expressed in Pseudomonas fluorescens Strain P3 Improve the Induction of Systemic Resistance in Tobacco Against Tobacco Necrosis Virus.
Phytopathology
88(7) pp. 678-684. [DOI]
[Web of Science]
[Pubmed]
Reimmann C., Serino L., Beyeler M., Haas D., 1998. Dihydroaeruginoic acid synthetase and pyochelin synthetase, products of the pchEF genes, are induced by extracellular pyochelin in Pseudomonas aeruginosa.
Microbiology
144(11) pp. 3135-3148. [DOI]
[Web of Science]
[Pubmed]
Schmid S., Seitz T., Haas D., 1998. Cointegrase, a naturally occurring, truncated form of IS21 transposase, catalyzes replicon fusion rather than simple insertion of IS21.
Journal of Molecular Biology
282(3) pp. 571-583. [DOI]
[Web of Science]
[Pubmed]
Haas D., Keel C., 1997. Construction of Pseudomonas strains with improved biocontrol activity. pp. 82-86 in Ogoshi A., Kobayashi K., Homma Y., Kodama F., Kondo N., Akino S. (eds.) Plant growth-promoting Rhizobacteria: present status and future prospects. Japan-OECD, Sapporo.
Reimmann C., Beyeler M., Latifi A., Winteler H., Foglino M., Lazdunski A., Haas D., 1997. The global activator GacA of Pseudomonas aeruginosa PAO positively controls the production of the autoinducer N-butyryl-homoserine lactone and the formation of the virulence factors pyocyanin, cyanide, and lipase.
Molecular Microbiology
24(2) pp. 309-319. [DOI]
[Web of Science]
[Pubmed]
Reimmann C., Maurhofer M., Schmidli-Sacherer P., Gaille C., Haas D., Défago G., 1997. Role of salicylate produced by Pseudomonas fluorescens in the suppression of tobacco diseases. pp. 248-250 in Ogoshi A., Kobayashi K., Homma Y., Kodama F., Kondo N, Akino S. (eds.) Plant growth-promoting rhizobacteria: present status and future prospects. OCDE, Sapporo.
Serino L., Reimmann C., Visca P., Beyeler M., Chiesa V.D., Haas D., 1997. Biosynthesis of pyochelin and dihydroaeruginoic acid requires the iron-regulated pchDCBA operon in Pseudomonas aeruginosa.
Journal of Bacteriology
179(1) pp. 248-257. [Web of Science]
[Pubmed]
Troxler J., Azelvandre P., Zala M., Défago G., Haas D., 1997. Conjugative Transfer of Chromosomal Genes between Fluorescent Pseudomonads in the Rhizosphere of Wheat.
Applied and Environmental Microbiology
63(1) pp. 213-219. [Web of Science]
[Pubmed]
Flaishman M. A., Eyal Z., Zilberstein A., Voisard C., Haas D., 1996. Suppression of Septoria tritici blotch and leaf rust of wheat by recombinant cyanide-producing strains of Pseudomonas putida.
Molecular Plant-Microbe Interactions
9(7) pp. 642-645. [DOI]
[Web of Science]
Haas D., Berger B., Schmid S., Seitz T., Reimmann C., 1996. Insertion sequence IS21: related insertion sequence elements, transpositional mechanisms, and application to linker insertion mutagenesis. pp. 238-249 in Nakazawa T., Furukawa K., Haas D., Silver S. (eds.) Molecular Biology of Pseudomonas. ASM Press, Washington, D.C.
Nguyen V.T., Baker D.P., Tricot C., Baur H., Villeret V., Dideberg O., Gigot D., Stalon V., Haas D., 1996. Catabolic ornithine carbamoyltransferase of Pseudomonas aeruginosa. Importance of the N-terminal region for dodecameric structure and homotropic carbamoylphosphate cooperativity.
European Journal of Biochemistry
236(1) pp. 283-293. [DOI]
[Web of Science]
[Pubmed]
Winteler H.V., Haas D., 1996. The homologous regulators ANR of Pseudomonas aeruginosa and FNR of Escherichia coli have overlapping but distinct specificities for anaerobically inducible promoters.
Microbiology
142(3) pp. 685-693. [DOI]
[Web of Science]
[Pubmed]
Winteler H.V., Schneidinger B., Jaeger K.E., Haas D., 1996. Anaerobically controlled expression system derived from the arcDABC operon of Pseudomonas aeruginosa: application to lipase production.
Applied and Environmental Microbiology
62(9) pp. 3391-3398. [Web of Science]
[Pubmed]
Maurhofer M., Keel C., Haas D., Défago G., 1995. Influence of plant species on disease suppression by Pseudomonas fluorescens strain CHA0 with enhanced antibiotic production.
Plant Patholology
44(1) pp. 40-50. [DOI]
[Web of Science]
Schnider U., Keel C., Blumer C., Troxler J., Défago G., Haas D., 1995. Amplification of the housekeeping sigma factor in Pseudomonas fluorescens CHA0 enhances antibiotic production and improves biocontrol abilities.
Journal of Bacteriology
177(18) pp. 5387-5392. [Web of Science]
[Pubmed]
Schnider U., Keel C., Voisard C., Défago G., Haas D., 1995. Tn5-directed cloning of pqq genes from Pseudomonas fluorescens CHA0: mutational inactivation of the genes results in overproduction of the antibiotic pyoluteorin.
Applied and Environmental Microbiology
61(11) pp. 3856-3864. [Web of Science]
[Pubmed]
Serino L., Reimmann C., Baur H., Beyeler M., Visca P., Haas D., 1995. Structural genes for salicylate biosynthesis from chorismate in Pseudomonas aeruginosa.
Molecular and General Genetics
249(2) pp. 217-228. [DOI]
[Web of Science]
[Pubmed]
Ye R.W., Haas D., Ka J.O., Krishnapillai V., Zimmermann A., Baird C., Tiedje J.M., 1995. Anaerobic activation of the entire denitrification pathway in Pseudomonas aeruginosa requires Anr, an analog of Fnr.
Journal of Bacteriology
177(12) pp. 3606-3609. [Web of Science]
[Pubmed]
Maurhofer M., Keel C., Haas D., Défago G., 1994. Pyoluteorin production by Pseudomonas fluorescens strain CHA0 is involved in the suppression of Pythium damping-off of cress but not of cucumber.
European Journal of Plant Patholology
100(3-4) pp. 221-232. [DOI]
[Web of Science]
Natsch A., Keel C., Pfirter H.A., Haas D., Défago G., 1994. Contribution of the Global Regulator Gene gacA to Persistence and Dissemination of Pseudomonas fluorescens Biocontrol Strain CHA0 Introduced into Soil Microcosms.
Applied and Environmental Microbiology
60(7) pp. 2553-2560. [Web of Science]
[Pubmed]
Nguyen V.T., Tricot C., Stalon V., Dideberg O., Villeret V., Haas D., 1994. Methionine-321 in the C-terminal alpha-helix of catabolic ornithine carbamoyltransferase from Pseudomonas aeruginosa is important for positive homotropic cooperativity.
FEMS Microbiology Letters
124(3) pp. 411-417. [DOI]
[Web of Science]
[Pubmed]
Pansegrau W., Lanka E., Barth P.T., Figurski D.H., Guiney D.G., Haas D., Helinski D.R., Schwab H., Stanisich V.A., Thomas C.M., 1994. Complete nucleotide sequence of Birmingham IncP alpha plasmids. Compilation and comparative analysis.
Journal of Molecular Biology
239(5) pp. 623-663. [DOI]
[Web of Science]
[Pubmed]
Sacherer P., Défago G., Haas D., 1994. Extracellular protease and phospholipase C are controlled by the global regulatory gene gacA in the biocontrol strain Pseudomonas fluorescens CHA0.
FEMS Microbiology Letters
116(2) pp. 155-160. [Web of Science]
[Pubmed]
Tricot C., Schmid S., Baur H., Villeret V., Dideberg O., Haas D., Stalon V., 1994. Catabolic ornithine carbamoyltransferase of Pseudomonas aeruginosa. Changes of allosteric properties resulting from modifications at the C-terminus.
European Journal of Biochemistry
221(1) pp. 555-561. [DOI]
[Web of Science]
[Pubmed]
Voisard C., Bull C., Keel C., Laville J., Maurhofer M., Schnider U., Défago G., Haas D., 1994. Biocontrol of root diseases by Pseudomonas fluorescens CHA0: current concepts and experimental approaches. pp. 67-89 in O'Gara F., Dowling D., Boesten B. (eds.) Molecular ecology of rhizosphere microorganisms: biotechnology and the release of GMOs. VCH Publishers, Weinheim. [DOI]
Bourdineaud J.P., Heierli D., Gamper M., Verhoogt H.J., Driessen A.J., Konings W.N., Lazdunski C., Haas D., 1993. Characterization of the arcD arginine:ornithine exchanger of Pseudomonas aeruginosa. Localization in the cytoplasmic membrane and a topological model.
Journal of Biological Chemistry
268(8) pp. 5417-5424. [Web of Science]
[Pubmed]
Gamper M., Haas D., 1993. Processing of the Pseudomonas arcDABC mRNA requires functional RNase E in Escherichia coli.
Gene
129(1) pp. 119-122. [DOI]
[Web of Science]
[Pubmed]
Reimmann C., Haas D., 1993. Mobilization of chromosomes and conjugative plasmids by cointegrative mechanisms. pp. 137-188 in Clewell D.B. (eds.) Bacterial conjugation. Plenum Press, New York.
Savioz A., Zimmermann A., Haas D., 1993. Pseudomonas aeruginosa promoters which contain a conserved GG-N10-GC motif but appear to be RpoN-independent.
Molecular and General Genetics
238(1-2) pp. 74-80. [DOI]
[Web of Science]
[Pubmed]
Gamper M., Ganter B., Polito M.R., Haas D., 1992. RNA processing modulates the expression of the arcDABC operon in Pseudomonas aeruginosa.
Journal of Molecular Biology
226(4) pp. 943-957. [DOI]
[Web of Science]
[Pubmed]
Keel C., Schnider U., Maurhofer M., Voisard C., Laville J., Burger U., Wirthner P., Haas D., Défago G., 1992. Suppression of root diseases by Pseudomonas fluorescens CHA0: Importance of the bacterial secondary metabolite 2,4-diacetylphloroglucinol.
Molecular Plant-Microbe Interactions
5(1) pp. 4-13. [DOI]
[Web of Science]
Laville J., Voisard C., Keel C., Maurhofer M., Défago G., Haas D., 1992. Global control in Pseudomonas fluorescens mediating antibiotic synthesis and suppression of black root rot of tobacco.
Proceedings of the National Academy of Sciences of the United States of America
89(5) pp. 1562-1566. [DOI]
[Web of Science]
[Pubmed]
Maurhofer M., Keel C., Schnider U., Voisard C., Haas D., Défago G., 1992. Influence of enhanced antibiotic production in Pseudomonas fluorescens strain CHA0 on its disease suppressive capacity.
Phytopathology
82(2) pp. 190-195. [DOI]
[Web of Science]
Verhoogt H.J., Smit H., Abee T., Gamper M., Driessen A.J., Haas D., Konings W.N., 1992. arcD, the first gene of the arc operon for anaerobic arginine catabolism in Pseudomonas aeruginosa, encodes an arginine-ornithine exchanger.
Journal of Bacteriology
174(5) pp. 1568-1573. [Web of Science]
[Pubmed]
Défago G., Keel C., Maurhofer M., Sacherer P., Wüthrich B., Gaia V., Laville J., Haas D., 1991. HCN as a signal in plant-microbe interactions.
Bulletin OILB/SROP
14(8) pp. 199-200.
Galimand M., Gamper M., Zimmermann A., Haas D., 1991. Positive FNR-like control of anaerobic arginine degradation and nitrate respiration in Pseudomonas aeruginosa.
Journal of Bacteriology
173(5) pp. 1598-1606. [Web of Science]
[Pubmed]
Gamper M., Zimmermann A., Haas D., 1991. Anaerobic regulation of transcription initiation in the arcDABC operon of Pseudomonas aeruginosa.
Journal of Bacteriology
173(15) pp. 4742-4750. [Web of Science]
[Pubmed]
Haas D., Keel C., Laville J., Maurhofer M., Oberhänsli T., Schnider U., Voisard C., Wüthrich B., Défago G., 1991. Secondary metabolites of Pseudomonas fluorescens strain CHA0 involved in the suppression of root diseases. pp. 450-456 in Hennecke H., Verma D. P. S. (eds.) Current plant science and biotechnology in agriculture, 10.
Advances in Molecular Genetics of Plant-Microbe Interactions
1. Kluwer, Dordrecht.
Keel C., Haas D., Laville J., Maurhofer M., Oberhänsli Th., Schnider U., Voisard C., Défago G., 1991. Suppression of soil-borne pathogens by Pseudomonas fluorescens - a multifactorial mechanism.
Bulletin OILB/SROP
14(8) pp. 195-196.
Keel C., Maurhofer M., Oberhänsli Th., Voisard C., Haas D., Défago G., 1991. Role of 2,4-diacetylphloroglucinol in the suppression of take-all of wheat by a strain of Pseudomonas fluorescens. pp. 335-339 in Beemster A. B. R., Bollen G. J., Gerlagh M., Ruissen M. A., Schippers B., Tempel A. (eds.) Biotic interactions and soil-borne diseases.
Developments in agricultural and managed-forest ecology
23. Elsevier, Amsterdam. [DOI]
Maurhofer M., Keel C., Schnider U., Voisard C., Haas D., Défago G., 1991. Does enhanced antibiotic production in Pseudomonas fluorescens strain CHA0 improve its disease suppressive capacity?
Bulletin OILB/SROP
14(8) pp. 201-202.
Oberhänsli T., Défago G., Haas D., 1991. Indole-3-acetic acid (IAA) synthesis in the biocontrol strain CHA0 of Pseudomonas fluorescens: role of tryptophan side chain oxidase.
Journal of General Microbiology
137(10) pp. 2273-2279. [Web of Science]
[Pubmed]
Zimmermann A., Reimmann C., Galimand M., Haas D., 1991. Anaerobic growth and cyanide synthesis of Pseudomonas aeruginosa depend on anr, a regulatory gene homologous with fnr of Escherichia coli.
Molecular Microbiology
5(6) pp. 1483-1490. [DOI]
[Web of Science]
[Pubmed]
Baur H., Tricot C., Stalon V., Haas D., 1990. Converting catabolic ornithine carbamoyltransferase to an anabolic enzyme.
Journal of Biological Chemistry
265(25) pp. 14728-14731. [Web of Science]
[Pubmed]
Défago G., Berling C.-H., Burger U., Haas D., Kahr G., Keel C., Voisard C., Wirthner P., Wüthrich B., 1990. Suppression of black root rot of tobacco and other root diseases by strains of Pseudomonas fluorescens: Potential applications and mechanisms. pp. 93-108 in Hornby D., ... [et al.] (eds.) Biological control of soil-borne plant pathogens. CAB International, Wallingford, UK.
Flaishman M., Eyal Z., Voisard C., Haas D, 1990. Suppression of Septoria tritici by phenazine- or siderophore-deficient mutants of Pseudomonas.
Current Microbiology
20(2) pp. 121-124. [DOI]
[Web of Science]
Keel C., Voisard C., Haas D., Défago G., 1990. Role of 2,4-diacetylphloroglucinol in disease suppression by a strain of Pseudomonas fluorescens. p. 1024 in Phytopathology.
Phytopathology
80(10).
Keel C., Wirthner Ph., Oberhänsli Th., Voisard C., Burger U., Haas D., Défago G., 1990. Pseudomonads as antagonists of plant pathogens in the rhizosphere: role of the antibiotic 2,4-diacetylphloroglucinol in the suppression of black root rot of tobacco.
Symbiosis
9(1-3) pp. 327-341. [Web of Science]
Lüthi E., Baur H., Gamper M., Brunner F., Villeval D., Mercenier A., Haas D., 1990. The arc operon for anaerobic arginine catabolism in Pseudomonas aeruginosa contains an additional gene, arcD, encoding a membrane protein.
Gene
87(1) pp. 37-43. [Web of Science]
[Pubmed]
Reimmann C., Haas D., 1990. The istA gene of insertion sequence IS21 is essential for cleavage at the inner 3' ends of tandemly repeated IS21 elements in vitro.
EMBO Journal
9(12) pp. 4055-4063. [Web of Science]
[Pubmed]
Savioz A., Jeenes D.J., Kocher H.P., Haas D., 1990. Comparison of proC and other housekeeping genes of Pseudomonas aeruginosa with their counterparts in Escherichia coli.
Gene
86(1) pp. 107-111. [DOI]
[Web of Science]
[Pubmed]
Baur H., Luethi E., Stalon V., Mercenier A., Haas D., 1989. Sequence analysis and expression of the arginine-deiminase and carbamate-kinase genes of Pseudomonas aeruginosa.
European Journal of Biochemistry
179(1) pp. 53-60. [DOI]
[Web of Science]
[Pubmed]
Haas D., Reimmann C., 1989. Use of IncP plasmids in chromosomal genetics of Gram-negative bacteria. pp. 185-206 in Thomas C.M. (eds.) Promiscuous plasmids of gram-negative bacteria. Academic Press, London.
Reimmann C., Moore R., Little S., Savioz A., Willetts N.S., Haas D., 1989. Genetic structure, function and regulation of the transposable element IS21.
Molecular and General Genetics
215(3) pp. 416-424. [DOI]
[Web of Science]
[Pubmed]
Voisard C., Keel C., Haas D., Dèfago G., 1989. Cyanide production by Pseudomonas fluorescens helps suppress black root rot of tobacco under gnotobiotic conditions.
EMBO Journal
8(2) pp. 351-358. [Web of Science]
[Pubmed]
Itoh Y., Soldati L., Leisinger T., Haas D., 1988. Low- and intermediate-copy-number cloning vectors based on the Pseudomonas plasmid pVS1.
Antonie van Leeuwenhoek
54(6) pp. 567-573. [DOI]
[Web of Science]
[Pubmed]
Itoh Y., Soldati L., Stalon V., Falmagne P., Terawaki Y., Leisinger T., Haas D., 1988. Anabolic ornithine carbamoyltransferase of Pseudomonas aeruginosa: nucleotide sequence and transcriptional control of the argF structural gene.
Journal of Bacteriology
170(6) pp. 2725-2734. [Web of Science]
[Pubmed]
Jann A., Matsumoto H., Haas D., 1988. The fourth arginine catabolic pathway of Pseudomonas aeruginosa.
Journal of General Microbiology
134(4) pp. 1043-1053. [Web of Science]
[Pubmed]
Reimmann C., Rella M., Haas D., 1988. Integration of replication-defective R68.45-like plasmids into the Pseudomonas aeruginosa chromosome.
Journal of General Microbiology
134(6) pp. 1515-1523. [Web of Science]
[Pubmed]
Vander Wauven C., Jann A., Haas D., Leisinger T., Stalon V., 1988. N2-succinylornithine in ornithine catabolism of Pseudomonas aeruginosa.
Archives of Microbiology
150(4) pp. 400-404. [Web of Science]
[Pubmed]
Voisard C., Rella M., Haas D., 1988. Conjugative transfer of plasmid RP1 to soil isolates of Pseudomonas fluorescens is facilitated by certain large RP1 deletions.
FEMS Microbiology Letters
55(1) pp. 9-14. [DOI]
[Web of Science]
Baur H., Stalon V., Falmagne P., Luethi E., Haas D., 1987. Primary and quaternary structure of the catabolic ornithine carbamoyltransferase from Pseudomonas aeruginosa. Extensive sequence homology with the anabolic ornithine carbamoyltransferases of Escherichia coli.
European Journal of Biochemistry
166(1) pp. 111-117. [DOI]
[Web of Science]
[Pubmed]
Haas D., Jann A., Reimmann C., Lüthi E., Leisinger T., 1987. Chromosome organization in Pseudomonas aeruginosa. Clustering and scattering of genes specifying four arginine catabolic pathways. pp. 256-263 in Döring G., Holder I.A., Botzenhart K. (eds.) Basic research and clinical aspects of Pseudomonas aeruginosa.
Antibiotics and Chemotherapy
39. Karger, Basel.
Haas D., Jann A., Reimmann C., Lüthi E., Leisinger T., 1987. Chromosome organization in Pseudomonas aeruginosa. Clustering and scattering of genes specifying four arginine catabolic pathways.
Antibiotics and Chemotherapy
39 pp. 256-263. [Pubmed]
Reimmann C., Haas D., 1987. Mode of replicon fusion mediated by the duplicated insertion sequence IS21 in Escherichia coli.
Genetics
115(4) pp. 619-625. [Web of Science]
[Pubmed]
Rella M., Watson J.M., Thomas C.M., Haas D., 1987. Deletions in the tetracycline resistance determinant reduce the thermosensitivity of a trfA(Ts) derivative of plasmid RP1 in Pseudomonas aeruginosa.
Annales de L'institut Pasteur. Microbiology
138(2) pp. 151-164. [DOI]
[Web of Science]
[Pubmed]
Soldati L., Jeenes D. J., Haas D., 1987. Effective gene expression in Pseudomonas aeruginosa under the control of the Escherichia coli consensus promoter.
FEMS Microbiology Letters
42(2-3) pp. 163-167. [DOI]
[Web of Science]
Hohnadel D., Haas D., Meyer J. M., 1986. Mapping of mutations affecting pyoverdine production in Pseudomonas aeruginosa.
FEMS Microbiology Letters
36(2-3) pp. 195-199. [DOI]
[Web of Science]
Jann A., Stalon V., Wauven C.V., Leisinger T., Haas D., 1986. N-Succinylated intermediates in an arginine catabolic pathway of Pseudomonas aeruginosa.
Proceedings of the National Academy of Sciences of the United States of America
83(13) pp. 4937-4941. [DOI]
[Web of Science]
[Pubmed]
Jeenes D.J., Soldati L., Baur H., Watson J.M., Mercenier A., Reimmann C., Leisinger T., Haas D., 1986. Expression of biosynthetic genes from Pseudomonas aeruginosa and Escherichia coli in the heterologous host.
Molecular and General Genetics
203(3) pp. 421-429. [DOI]
[Web of Science]
[Pubmed]
Lüthi E., Mercenier A., Haas D., 1986. The arcABC operon required for fermentative growth of Pseudomonas aeruginosa on arginine: Tn5-751-assisted cloning and localization of structural genes.
Journal of General Microbiology
132(10) pp. 2667-2675. [Web of Science]
[Pubmed]
Martin C., Cami B., Borne F., Jeenes D.J., Haas D., Patte J.C., 1986. Heterologous expression and regulation of the lysA genes of Pseudomonas aeruginosa and Escherichia coli.
Molecular and General Genetic
203(3) pp. 430-434. [DOI]
[Web of Science]
[Pubmed]
Reimmann C., Haas D., 1986. IS21 insertion in the trfA replication control gene of chromosomally integrated plasmid RP1: a property of stable Pseudomonas aeruginosa Hfr strains.
Molecular and General Genetics
203(3) pp. 511-519. [DOI]
[Web of Science]
[Pubmed]
Früh R., Haas D., Leisinger T., 1985. Altered control of glutamate dehydrogenases in ornithine utilization mutants of Pseudomonas aeruginosa.
Archives of Microbiology
141(2) pp. 170-176. [Web of Science]
[Pubmed]
Itoh Y., Haas D., 1985. Cloning vectors derived from the Pseudomonas plasmid pVS1.
Gene
36(1-2) pp. 27-36. [DOI]
[Web of Science]
[Pubmed]
Rella M., Mercenier A., Haas D., 1985. Transposon insertion mutagenesis of Pseudomonas aeruginosa with a Tn5 derivative: application to physical mapping of the arc gene cluster.
Gene
33(3) pp. 293-303. [Web of Science]
[Pubmed]
Wretlind B., Becker K., Haas D., 1985. IncP-1 R plasmids decrease the serum resistance and the virulence of Pseudomonas aeruginosa.
Journal of General Microbiology
131(10) pp. 2701-2704. [Web of Science]
[Pubmed]
Haas D., Cryz jr. S.J., Itoh Y., Leisinger T., Lüthi E., Reimmann C., Rella M., Soldati L., Watson J., Wretlind B., 1984. Some applications of transposon insertion mutagenesis. pp. 92-111 in Heslot H. (eds.) La génétique des microorganismes industriels. Société Française de Microbiologie, Paris.
Haas D., Matsumoto H., Moretti P., Stalon V., Mercenier A., 1984. Arginine degradation in Pseudomonas aeruginosa mutants blocked in two arginine catabolic pathways.
Molecular and General Genetics
193(3) pp. 437-444. [DOI]
[Web of Science]
[Pubmed]
Itoh Y., Watson J.M., Haas D., Leisinger T., 1984. Genetic and molecular characterization of the Pseudomonas plasmid pVS1.
Plasmid
11(3) pp. 206-220. [DOI]
[Web of Science]
[Pubmed]
Soldati L., Crockett R., Carrigan J.M., Leisinger T., Holloway B.W., Haas D., 1984. Revised locations of the hisI and pru (proline utilization) genes on the Pseudomonas aeruginosa chromosome map.
Molecular and General Genetics
193(3) pp. 431-436. [DOI]
[Web of Science]
[Pubmed]
Vander Wauven C., Piérard A., Kley-Raymann M., Haas D., 1984. Pseudomonas aeruginosa mutants affected in anaerobic growth on arginine: evidence for a four-gene cluster encoding the arginine deiminase pathway.
Journal of Bacteriology
160(3) pp. 928-934. [Web of Science]
[Pubmed]
Früh R., Watson J.M., Haas D., 1983. Construction of recombination-deficient strains of Pseudomonas aeruginosa.
Molecular and General Genetics
191(2) pp. 334-337. [Web of Science]
[Pubmed]
Haas D., 1983. Genetic aspects of biodegradation by pseudomonads.
Experientia
39(11) pp. 1199-1213. [Web of Science]
[Pubmed]
Haas D., Riess G., 1983. Spontaneous deletions of the chromosome-mobilizing plasmid R68.45 in Pseudomonas aeruginosa PAO.
Plasmid
9(1) pp. 42-52. [DOI]
[Web of Science]
[Pubmed]
Mercenier A., Stalon V., Simon J.P., Haas D., 1982. Mapping of the arginine deiminase gene in Pseudomonas aeruginosa.
Journal of Bacteriology
149(2) pp. 787-788. [Web of Science]
[Pubmed]
Rella M., Haas D., 1982. Resistance of Pseudomonas aeruginosa PAO to nalidixic acid and low levels of beta-lactam antibiotics: mapping of chromosomal genes.
Antimicrobial Agents and Chemotherapy
22(2) pp. 242-249. [Web of Science]
[Pubmed]
Haas D., Watson J., Krieg R., Leisinger T., 1981. Isolation of an Hfr donor of Pseudomonas aeruginosa PAO by insertion of the plasmid RP1 into the tryptophan synthase gene.
Molecular and General Genetics
182(2) pp. 240-244. [DOI]
[Web of Science]
[Pubmed]
Mercenier A., Simon J.P., Haas D., Stalon V., 1980. Catabolism of L-arginine by Pseudomonas aeruginosa.
Journal of General Microbiology
116(2) pp. 381-389. [Web of Science]
[Pubmed]
Mercenier A., Simon J.P., Vander Wauven C., Haas D., Stalon V., 1980. Regulation of enzyme synthesis in the arginine deiminase pathway of Pseudomonas aeruginosa.
Journal of Bacteriology
144(1) pp. 159-163. [Web of Science]
[Pubmed]
Hass D., Evans R., Mercenier A., Simon J.P., Stalon V., 1979. Genetic and physiological characterization of Pseudomonas aeruginosa mutants affected in the catabolic ornithine carbamoyltransferase.
Journal of Bacteriology
139(3) pp. 713-720. [Web of Science]
[Pubmed]
Haas D., Holloway B.W., 1978. Chromosome mobilization by the R plasmid R68.45: a tool in Pseudomonas genetics.
Molecular and General Genetics
158(3) pp. 229-237. [DOI]
[Web of Science]
[Pubmed]
Haas D., Holloway B.W., Schamböck A., Leisinger T., 1977. The genetic organization of arginine biosynthesis in Pseudomonas aeruginosa.
Molecular and General Genetics
154(1) pp. 7-22. [DOI]
[Web of Science]
[Pubmed]
Haas D., Holloway B.W., 1976. R factor variants with enhanced sex factor activity in Pseudomonas aeruginosa.
Molecular and General Genetics
144(3) pp. 243-251. [DOI]
[Web of Science]
[Pubmed]
Leisinger T., Haas D., Kelker N., 1976. Expression of the argA gene carried by a defective lambda bacteriophage of Escherichia coli.
Journal of Bacteriology
125(3) pp. 1217-1219. [Web of Science]
[Pubmed]
Haas D., Leisinger T., 1975. N-acetylglutamate 5-phosphotransferase of Pseudomonas aeruginosa. Catalytic and regulatory properties.
European Journal of Biochemistry
52(2) pp. 377-393. [Web of Science]
[Pubmed]
Haas D., Leisinger T., 1975. N-acetylglutamate 5-phosphotransferase of Pseudomonas aeruginosa. Purification and ligand-directed association-dissociation.
European Journal of Biochemistry
52(2) pp. 365-375. [DOI]
[Web of Science]
[Pubmed]
Leisinger T., Haas D., 1975. N-Acetylglutamate synthase of Escherichia coli regulation of synthesis and activity by arginine.
Journal of Biological Chemistry
250(5) pp. 1690-1693. [Web of Science]
[Pubmed]
Haas D., Leisinger T., 1974. In vitro assay and some properties of N-acetylglutamate synthetase from Escherichia coli.
Pathologia et Microbiologia
40(3) pp. 140-141. [DOI]
[Web of Science]
[Pubmed]
Haas D., Leisinger T., 1974. Multiple control of N-acetylglutamate synthetase from Pseudomonas aeruginosa: synergistic inhibition by acetylglutamate and polyamines.
Biochemical and Biophysical Research Communications
60(1) pp. 42-47. [DOI]
[Web of Science]
[Pubmed]
Leisinger T., O'Sullivan C., Haas D., 1974. Arginine analogues: effect on growth and on the first two enzymes of the arginine pathway in Pseudomonas aeruginosa.
Journal of General Microbiology
84(2) pp. 253-260. [DOI]
[Web of Science]
[Pubmed]
Haas D., Kurer V., Leisinger T., 1972. N-acetylglutamate synthetase of Pseudomonas aeruginosa. An assay in vitro and feedback inhibition by arginine.
European Journal of Biochemistry
31(2) pp. 290-295. [DOI]
[Web of Science]
[Pubmed]
Lesinger T., Haas D., Hegarty M.P., 1972. Indospicine as an arginine antagonist in Escherichia coli and Pseudomonas aeruginosa.
Biochimica et Biophysica Acta - Nucleic Acids and Protein Synthesis
262(2) pp. 214-219. [DOI]
[Web of Science]
[Pubmed]


