391 resultados para quorum


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In Pseudomonas aeruginosa, the small RNA-binding, regulatory protein RsmA is a negative control element in the formation of several extracellular products (e.g., pyocyanin, hydrogen cyanide, PA-IL lectin) as well as in the production of N-acylhomoserine lactone quorum-sensing signal molecules. RsmA was found to control positively the ability to swarm and to produce extracellular rhamnolipids and lipase, i.e., functions contributing to niche colonization by P. aeruginosa. An rsmA null mutant was entirely devoid of swarming but produced detectable amounts of rhamnolipids, suggesting that factors in addition to rhamnolipids influence the swarming ability of P. aeruginosa. A small regulatory RNA, rsmZ, which antagonized the effects of RsmA, was identified in P. aeruginosa. Expression of the rsmZ gene was dependent on both the global regulator GacA and RsmA, increased with cell density, and was subject to negative autoregulation. Overexpression of rsmZ and a null mutation in rsmA resulted in quantitatively similar, negative or positive effects on target genes, in agreement with a model that postulates titration of RsmA protein by RsmZ RNA.

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Azithromycin at clinically relevant doses does not inhibit planktonic growth of the opportunistic pathogen Pseudomonas aeruginosa but causes markedly reduced formation of biofilms and quorum-sensing-regulated extracellular virulence factors. In the Gac/Rsm signal transduction pathway, which acts upstream of the quorum-sensing machinery in P. aeruginosa, the GacA-dependent untranslated small RNAs RsmY and RsmZ are key regulatory elements. As azithromycin treatment and mutational inactivation of gacA have strikingly similar phenotypic consequences, the effect of azithromycin on rsmY and rsmZ expression was investigated. In planktonically growing cells, the antibiotic strongly inhibited the expression of both small RNA genes but did not affect the expression of the housekeeping gene proC. The azithromycin treatment resulted in reduced expression of gacA and rsmA, which are known positive regulators of rsmY and rsmZ, and of the PA0588-PA0584 gene cluster, which was discovered as a novel positive regulatory element involved in rsmY and rsmZ expression. Deletion of this cluster resulted in diminished ability of P. aeruginosa to produce pyocyanin and to swarm. The results of this study indicate that azithromycin inhibits rsmY and rsmZ transcription indirectly by lowering the expression of positive regulators of these small RNA genes.

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The human pathogen Pseudomonas aeruginosa has been shown previously to use similar virulence factors when infecting mammalian hosts or Dictyostelium amoebae. Here we randomly mutagenized a clinical isolate of P. aeruginosa, and identified mutants with attenuated virulence towards Dictyostelium. These mutant strains also exhibited a strong decrease in virulence when infecting Drosophila and mice, confirming that P. aeruginosa makes use of similar virulence traits to confront these very different hosts. Further characterization of these bacterial mutants showed that TrpD is important for the induction of the quorum-sensing circuit, while PchH and PchI are involved in the induction of the type III secretion system. These results demonstrate the usefulness and the relevance of the Dictyostelium host model to identify and analyse new virulence genes in P. aeruginosa.

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Posttranscriptional control is known to contribute to the regulation of secondary metabolism and virulence determinants in certain gram-negative bacteria. Here we report the isolation of a Pseudomonas aeruginosa gene which encodes a global translational regulatory protein, RsmA (regulator of secondary metabolites). Overexpression of rsmA resulted in a substantial reduction in the levels of extracellular products, including protease, elastase, and staphylolytic (LasA protease) activity as well as the PA-IL lectin, hydrogen cyanide (HCN), and the phenazine pigment pyocyanin. While inactivation of rsmA in P. aeruginosa had only minor effects on the extracellular enzymes and the PA-IL lectin, the production of HCN and pyocyanin was enhanced during the exponential phase. The influence of RsmA on N-acylhomoserine lactone-mediated quorum sensing was determined by assaying the levels of N-(3-oxododecanoyl)homoserine lactone (3-oxo-C12-HSL) and N-butanoylhomoserine lactone (C4-HSL) produced by the rsmA mutant and the rsmA-overexpressing strain. RsmA exerted a negative effect on the synthesis of both 3-oxo-C12-HSL and C4-HSL, which was confirmed by using lasI and rhlI translational fusions. These data also highlighted the temporal expression control of the lasI gene, which was induced much earlier and to a higher level during the exponential growth phase in an rsmA mutant. To investigate whether RsmA modulates HCN production solely via quorum-sensing control, hcn translational fusions were employed to monitor the regulation of the cyanide biosynthesis genes (hcnABC). RsmA was shown to exert an additional negative effect on cyanogenesis posttranscriptionally by acting on a region surrounding the hcnA ribosome-binding site. This suggests that, in P. aeruginosa, RsmA functions as a pleiotropic posttranscriptional regulator of secondary metabolites directly and also indirectly by modulating the quorum-sensing circuitry.

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The global response regulator GacA of Pseudomonas aeruginosa PAO1 positively controls the production of the quorum sensing signal molecule N-butanoyl-homoserine-lactone (C4-HSL) and hence the synthesis of several C4-HSL-dependent virulence factors, including hydrogen cyanide (HCN). This study presents evidence that GacA positively influences the transcription of the rhlI gene, specifying C4-HSL synthase, explaining the quorum sensing-dependent transcriptional control of the HCN biosynthetic genes (hcnABC). In addition, GacA was found to modulate hcn gene expression positively at a post-transcriptional level involving the hcnA ribosome-binding site. Thus, the activating effect of GacA on cyanogenesis results from both transcriptional and post-transcriptional mechanisms.

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Cet exemplaire de la Lectura d’Henri de Suso sur les Décrétales, dont il ne reste que le premier volume, présente la particularité de contenir aussi le texte des Décrétales, chacune d’elles étant suivie par le commentaire correspondant. Certaines anomalies de la copie permettent de préciser que les copistes avaient comme modèle deux manuscrits différents, un pour la Lectura et l’autre pour les Décrétales dans une édition augmentée des Novelles d'Innocent IV, qui devaient être insérées à la suite des titres correspondants, selon la prescription pontificale de 1245. Le texte même des Novelles qui n’était pas commenté dans la Lectura n’a pas été repris dans la copie, sauf l’Extravagante Quia frequenter, au f. 37v, et Sext. I, 13, 1, au f. 133. F. 1-360v. F. 1-177v. "Apparatus [HENRICI de SEGUSIO cardinalis] Ostiensis super textum Decretalium". [Prooemium:] "[A]d Dei omnipotentis gloriam et universalis ecclesie decus et decorem necnon rei publice et maxime scolasticorum utilitatem... - ...emendate"; — [In epistola dedicatoria Gregorii IX:] "Vicarius regis pacifici ad communem utilitatem et maxime studencium quinque compilationes... - ...et punit" (éd.Venise, I, 3-3v). — "Incipit liber primus Decretalium". [GREGORIUS IX papa, Epistola dedicatoria, salutatio] ; suivi de [HENRICUS DE SEGUSIO, Lectura :] "Gregorius episcopus. Omnes sunt episcopi licet vocentur archiepiscopi, primates vel patriarche... de manu apud eum"; — [GREGORIUS IX papa, Epistola dedicatoria] terminée par l'inscription rubriquée de la première Décrétale; suivi de: [HENRICUS DE SEGUSIO, Lectura in epistola dedicatoria :] "Rex. Regum et omnium potestatum. VIII di. que contra mores... - ...super verbo hac tantum"; et de [ID., Lectura in prima rubrica : ]"Quoniam omne quod non est in fine... - ...de fide catholica" (éd.Venise, I, 3v-5) (1-2v). — Extra 1, 1, 1 ; suivi de [ID., Lectura : ] "Firmiter credimus. Bene dicit nam dubius in fine... - ...Extra 1, 37, 1 ; suivi de [ID., Lectura : ] "Clerici... Et si beneficio etc. careant... de foro compe.", incomplet de la fin par lacune matérielle (éd.Venise, I, 5-182, § 10) (2v-177v). A noter: var. de plusieurs lignes à l'explicit des commentaires sur Extra 1, 1, 2 et 1, 3, 11. A noter les anomalies suivantes :L’inscription de chaque Décrétale, à quelques exceptions près, a été inscrite à la fin du texte de la Décrétale précédente. Le libellé: "Innocentius IIIIus" ou bien "Innocentius IIIIus in concil. Lugdun", qui a été inscrit à la fin des titres I, 3 (25v), 6, (85), 10 (103), 28 (132v), 29 (153), 30 (155v), 31 (164) correspond, en fait, à l'inscription des Novelles d'Innocent IV éditées dans le Sexte, livre I, en tête des titres 3, 6, 8, 13, 14, 15, 16.Au f. 37v, à la suite d'Extra 1, 6, 6, le texte de la constitution d'Innocent IV Quia frequenter a été copié, puis exponctué en marge par un correcteur avec la mention "vacat": "Quia frequenter in electione summorum pontificum colupna Dei... - ...minime computato" avec l'inscription: "Idem" écrite à la fin de la Décrétale précédente qui renvoie à Alexandre III. Sur ce texte qui n’a pas été repris dans le Sexte ; cf. H. Singer, Zeitschrift der Savigny-Stiftung für Rechtesgeschichte, Kan. Abt., VI (1916), 1-140 (éd. Friedberg, 946, Sext. 1, 6, 3, note c). Autres manuscrits recensés : Londres, B.L. ms. Add. 18368, f. 8v ; Paris, BNF ms. latin 14324, f. 234 ; Paris, Bibl. Sainte-Geneviève ms. 339, f. 90 ; Prague, I-B4, f. ? (renseignement aimablement communiqué par Michèle Bégou-Davia).Au f. 133, le titre I, 28 est suivi du texte de Sext. I, 13, 1.Au f.114v, le texte d’Extra 1, 15, 1 §1-6 a été copié une première fois dans le module de la glose à la fin d'un cahier, puis exponctué en marge avec la mention "vacat" et recopié dans le gros module habituel sur un feuillet additionnel (115).Aux ff. 133v-134, les Décrétales 1, 29, 3 et 4, suivies de leurs commentaires, ont été interverties ; de même que les Décrétales 1, 29, 42 et 43, aux ff. 152v-153v. F. 178-360v. "Incipit liber secundus". Extra 2, 1, 1 ; suivi de [HENRICUS DE SEGUSIO, Lectura:] "[D]e Quovultdeo etc. Supple ita statutum est d. n. sed propter hoc plene non subvenitur constronccioni [sic].." - ... Extra 2, 30, 6 "... archid. c. fi. § fi". "Explicit liber secundus. Benedictus sit Deus." (éd.Venise, II, 2-209v). Comme dans le livre I, le libellé inscrit à la fin des titres II, 1 (187), 2 (196v), 5 (202), 13 (240), 14 (247), 15 (249), 18 (252v), 25 (312v), 27 (329v), 28 (357v) correspond à l'inscription des Novelles d'Innocent IV éditées dans le Sexte, livre II, en tête des titres 1-3, 5-7, 9, 12, 14, 15.Au f. 196v, le copiste a copié à la suite les commentaire sur Extra 2, 2, 19 et 20, omettant le texte de Extra 2, 20 qu'il a dû ajouter ensuite dans la marge. Au f. 205, le copiste a mal apprécié l’espace réservé pour Extra 6, 2, le texte commencé normalement en gros module d'écriture, se poursuit en petit module et se termine dans la marge inférieure. De même, au f. 227, les dernières lignes d’ Extra 12, 7 ont dû être écrites dans la marge, avec un signe de renvoi. F. 360v-362. Commentaire anonyme sur Extra 2, 28, 59 De appellationibus: "Ut debitus honor etc. More solito dominus Innocencius premittit causam constitutionis exprimens duas causas motivas: qualiter hec constitutio promulgatur antipophornando... - ... se scit et c. arguta". A noter, f. 1-72v, en marge. PETRUS DE SAMPSONA, Distinctiones super Decretalibus 1, 1, 1-1, 6, 44, excerpta; cf. M. Bertram, "Pierre de Sampson et Bernard de Montmirat...", dans L'Eglise et le droit dans le Midi (XIIIe-XIVe s.) (Cahiers de Fanjeaux, 29), Toulouse, 1994, 37-74 et part. 66, parmi les mss recensés. En marge de l'inscription de l'épitre de Grégoire IX: "Greg. ep. etc. Dominus papa Christi universitatis vicarius set episcopus dicitur singularis quare dominus papa dicatur servus... - ...a papa"; en marge de l'épitre dédicatoire: "Rex pacificus quarum alique propter nimiam similitudinem quedam propter contrarietatem sed numquid in hac compilacione... - ...per totum", incipit A de M. Bertram, art. cit., 64 (1) ; — en marge de la Lectura sur l'épitre dédicatoire: Rex pacificus dicitur esse pacificus et Christus pacem diligit temporalem... - ...approbatur" (1v). — Dernière glose en marge d'Extra 1, 6, 44: "Itaque interim etc. Hii etiam qui pape... - ... et similibus" (72v). A noter, au f. 55v, à la fin de la glose, la signature "P. Sampsone" et au f. 67, "P. Samp.". F. 1-69v, passim et 124v-125. Gloses marginales ajoutées par une main cursive anglaise, contemporaine de la copie. « Doctoribus. Qui faciunt universitatem... - ...dilectus. [signé] Abb(at)is" (Bernardus de Montmirat, Lectura in Decretales, ed. Venise, 1588, I, 2) (1). —En marge de la Lecture sur Extra 1, 6, 42: "B. in apostillis suis dicit quod si aliquis potestatem... - ...commento Hostiensis" (69v).

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Among biocontrol agents that are able to suppress root diseases caused by fungal pathogens, root-colonizing fluorescent pseudomonads have received particular attention because many strains of these bacteria trigger systemic resistance in host plants and produce antifungal compounds and exoenzymes. In general, the expression of these plant-beneficial traits is regulated by autoinduction mechanisms and may occur on roots when the pseudomonads form microcolonies. Three major classes of antibiotic compounds reviewed here in detail (2,4-diacetylphloroglucinol, pyoluteorin and various phenazine compounds) are all produced under cell population density-dependent autoinduction control acting at transcriptional and post-transcriptional levels. This regulation can either be reinforced or attenuated by a variety of chemical signals emanating from the pseudomonads themselves, other microorganisms or root exudates. Signals stimulating biocontrol factor expression via the Gac/Rsm signal transduction pathway in the biocontrol strain Pseudomonas fluorescens CHA0 are synthesized by many different plant-associated bacteria, warranting a more detailed investigation in the future.

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Staphylococcus aureus est un pathogène humain majeur ayant développé des résistances contre la quasi totalité des antibiotiques disponibles, incluant la très importante famille des β- lactamines. La résistance à cette classe d'antibiotiques est conférée par la « Staphylococcal Cassette Chromosome mec » (SCCmec), qui est un élément génétique mobile capable de s'insérer dans le chromosome bactérien et capable d'être transféré horizontalement chez d'autres staphylocoques. Le mécanisme moléculaire impliqué dans ce transfert horizontal demeure largement inconnu. L'une des premières étapes du transfert est l'excision du SCC mec du chromosome bactérien. Cette excision est promue par des enzymes codées par l'élément SCCmec lui- même et appelées de ce fait « Cassette Chromosome Recombinases » (Ccr). L'un des buts de ce travail de thèse a été de comprendre la régulation de l'expression des gènes codant pour les Ccr recombinases. En utilisant des outils moléculaires originaux, nous avons été en mesure de démontrer en premier lieu que les Ccr recombinases étaient exprimées de façon « bistable », c'est à dire qu'uniquement quelques pourcents de cellules dans une population exprimaient ces gènes à un temps donné. Dans un deuxième temps, nous avons également démontré que l'expression de ces gènes était régulée par des facteurs étrangers au SCC mec. L'expression bistable des recombinases est un concept important. Effectivement, cela permet à la majorité des cellules d'une population de conserver l'élément SCC mec, alors que seulement une petite fraction le perd afin de le rendre disponible pour un transfert. Ainsi, alors que l'élément SCC mec continue de se propager avec la multiplication des bactéries Staphylococcus aureus résistant à la méticilline (SARM), il peut être simultanément transmis à des souches susceptibles (Staphylococcus aureus susceptible à la méticilline, SASM), entraînant l'apparition de nouveaux SARM. De façon très intéressante, le fait que cette bistabilité est contrôlée par les bactéries, et non le SCCmec lui-même, montre que la décision de transférer ou non la cassette SCC mec appartient à la bactérie. En conséquence, il doit exister dans la nature des souches qui sont plus ou moins aptes à effectuer ce transfert. En nous appuyant sur ces observations, nous avons montré que l'excision du SCC mec était effectivement régulée de façon très étroite au cours de la division cellulaire, et ne se passait que pendant un temps limité au début de la croissance. Ce résultat est compatible avec une régulation génétique commandée par la densité cellulaire, qui pourrait être dépendante de la production de signaux extracellulaires, du type que l'on rencontre dans le quorum sensing. Les signaux hypothétiques entraînant l'excision du SCC mec restent inconnus à l'heure actuelle. La connaissance de ces signaux pourrait se révéler très importante afin de développer des stratégies pour interférer avec la dissémination de la résistance au β-lactamines. Deux sujets additionnels ont été logiquement investigués au vu de ces premiers résultats. Premièrement, si certaines souches de SARM sont plus ou moins aptes à déclencher l'excision du SCC mec, de même certaines souches de SASM devraient être plus ou moins aptes à acquérir cet élément. Deuxièmement, afin d'étudier ces mécanismes de transfert au niveau épidémiologique, il nous a été nécessaire de développer des outils nous permettant d'explorer le phénomène à une plus large échelle. Concernant le premier point, il a été postulé que certains SASM seraient réfractaires à l'intégration génomique d'un SCC mec en raison de polymorphismes particuliers à proximité du site d'insertion chromosomique (attB). En étudiant plus de 40 isolais de S. aureus, provenant de porteurs sains, nous avons confirmé ce polymorphisme dans l'environnement à'attB. De plus, nous avons pu montrer que ces régions polymorphiques ont évolué parallèlement à des groupes phylogénétiques bien connus. Ainsi, si des telles régions réfractaires à l'intégration de SCC mec existent, celles-ci devraient ségréger dans des complexes clonaux bien définis qui devraient être facilement identifiables au niveau épidémiologique. Concernant le second point, nous avons été capables de construire un système rapporteur de l'excision du SCCmec, en utilisant un plasmide à faible copie. Ce système consistait en un promoteur fort et un gène codant pour une protéine verte fluorescente (GFP) sous le contrôle d'un promoteur fort séparés à l'aide d'un élément SCC artificiel portant trois terminateurs de transcription. Ainsi, la fluorescence ne s'exprime que si l'élément SCC est excisé du plasmide. Ce système a été testé avec succès dans plusieurs types de staphylocoques, et est actuellement évalué dans d'autres souches et conditions stimulant ou inhibant l'excision. De manière générale, cette dissertation représente parcours scientifique à travers plusieurs aspects d'un problème de santé publique majeur en rapport avec la résistance bactérienne aux antibiotiques. Ce travail s'attaque à des problèmes fondamentaux concernant le transfert horizontal de l'élément SCC mec. De plus, il s'intéresse à des aspects plus généraux de cet élément génétique mobile qui pourraient se révéler très importants en terme de mouvement de gènes au sein des staphylocoques, voir d'autres bactéries gram-positives. Finalement ce travail de thèse met en place le fondamentaux requis pour des recherches futures visant à interférer avec le transfert horizontal de la résistance aux β-lactamines. - Staphylococcus aureus is a major human pathogen. Moreover, S. aureus have developed resistance to almost all available antibiotics, including the important family of β-lactam molecules. Intrinsic resistance to β-lactams is conferred by the Staphylococcal Cassette Chromosome mec (SCCmec), which is a mobile genomic island that inserts into the staphylococcal chromosome and can be horizontally transferred into other staphylococci. However, little is known about the molecular mechanisms involved in this horizontal transfer into naïve strains. One of the first steps in SCC mec horizontal transfer is its excision from the chromosome. Excision is mediated by recombinase enzymes that are encoded by SCC mec itself, and named accordingly Ccr recombinases - for Cassette Chromosome recombinases. One goal of this thesis was to understand the regulation these recombinase genes. By using original molecular tools we could demonstrate first that the Ccr recombinases were expressed in a "bistable" manner, i.e. in only few percentages of the bacterial cells at a given time, and second that they were regulated by determinants that were not encoded on the SCC mec element, but elsewhere on the staphylococcal genome. "Bistable" expression Ccr recombinases is an important concept. It allows SCC mec to be excised and thus available for horizontal transfer, while ensuring that only some cells, but not the whole population, loose their valuable SCC mec genes. Thus, while the SCC mec element expands with the multiplication of the MRSA colony, it can simultaneously be transmitted into methicillin-susceptible S. aureus (MSSA), which convert into new MRSA. Most interestingly, the fact that bistability was regulated by the cells, rather than by SCC mec, indicates that it was the choice of the bacteria to trigger or not SCC mec transfer. As a consequence, there must be, in nature, staphylococcal strains that are more or less prone to sustain SCC mec transfer. Following these seminal observations we found that excision was indeed tightly regulated during bacterial division, and occurred only during a limited period of time at the beginning of bacterial growth. This is compatible with cell-density mediated gene regulation, and may depend on the production of extracellular signal molecules that transmit appropriate orders to neighboring cells, such as in quorum sensing. The potential signal triggering SCCmec excision is as yet unknown. However, it could be critical in promoting the horizontal transfer of methicillin resistance, or for the possible development of means to interfere with it. Two additional hypothesis were logically investigated in the view of these first results. First, if some strains of MRSA might be more prone than others to promote SCC mec excision, then some strains of MS SA might be more or less prone to acquire the element as well. Second, to investigate these multiple mechanisms at an epidemiological level, one would need to develop tools amenable to explore S. aureus strains at a larger scale. Regarding the first issue, it was postulated by others that some MSSA might be refractory to SCC mec integration because they had peculiar DNA polymorphisms in the vicinity of the site-specific chromosomal entry point {attB) of SCC mec. By studying >40 S. aureus isolates from healthy carriers, we confirmed the polymorphism of the attB environment. Moreover, we could show that these polymorphic regions co-evolved with well-known phylogenic clonal clusters. Therefore, if SCCwec-refractory attB environments exist, then they would segregate in well- defined S. aureus clonal clusters that would be easy to identify at the epidemiological level. Regarding the second issue, we were able to construct a new excision reporter system in a low copy number S. aureus plasmid. The reporter system consists in a strong promoter driving a green fluorescent protein {gfp) gene, separated by an artificial SCC-like element carrying three transcriptional terminators. Thus, fluorescence is not expressed unless the SCC-like element is excised. The system has been successfully tested in several aureus and non- aureus staphylococci, and is now being applied to more strains and various excision- triggering or inhibiting conditions. Altogether the dissertation is a scientific journey through various aspects of a salient medical problem with regard to antibiotic resistance and public health threat. The research work tackles fundamental issues about the mechanisms of horizontal transfer of the SCC mec element. Moreover, it also addresses more general features of this mobile element, which could be of larger importance with regard to gene trafficking in staphylococci, and maybe other gram-positive bacteria. Finally, the dissertation sets the fundamentals for future work and possible new ways to interfere with the horizontal transfer of methicillin resistance.

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RESUMO Este trabalho apresenta uma síntese simplificada do processo de elaboração de lei, a partir de sua conceituação jurídica, requisitos, hierarquia das normas, etapas da tramitação nas duas casas do Congresso Nacional, necessidade de quorum e sanção presidencial até um projeto de lei ser transformado em lei. Tem por objetivo auxiliar os enfermeiros e outras pessoas interessadas no assunto a participar no desenvolvimento de sua profissão através de leis que atendam melhor aos interesses profissionais da classe.

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Virulence in the opportunistic human pathogen Pseudomonas aeruginosa is controlled by cell density via diffusible signalling molecules ('autoinducers') of the N-acylhomoserine lactone (AHL) type. Two Bacillus sp. isolates (A23 and A24) with AHL-degrading activity were identified among a large collection of rhizosphere bacteria. From isolate A24 a gene was cloned which was similar to the aiiA gene, encoding an AHL lactonase in another Bacillus strain. Expression of the aiiA homologue from isolate A24 in P. aeruginosa PAO1 reduced the amount of the quorum sensing signal N-oxododecanoyl-L-homoserine lactone and completely prevented the accumulation of the second AHL signal, N-butyryl-L-homoserine lactone. This strongly reduced AHL content correlated with a markedly decreased expression and production of several virulence factors and cytotoxic compounds such as elastase, rhamnolipids, hydrogen cyanide and pyocyanin, and strongly reduced swarming. However, no effect was observed on flagellar swimming or on twitching motility, and aiiA expression did not affect bacterial adhesion to a polyvinylchloride surface. In conclusion, introduction of an AHL degradation gene into P. aeruginosa could block cell-cell communication and exoproduct formation, but failed to interfere with surface colonization.

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In the plant-beneficial soil bacterium and biocontrol model organism Pseudomonas fluorescens CHA0, the GacS/GacA two-component system upregulates the production of biocontrol factors, i.e. antifungal secondary metabolites and extracellular enzymes, under conditions of slow, non-exponential growth. When activated, the GacS/GacA system promotes the transcription of a small regulatory RNA (RsmZ), which sequesters the small RNA-binding protein RsmA, a translational regulator of genes involved in biocontrol. The gene for a second GacA-regulated small RNA (RsmY) was detected in silico in various pseudomonads, and was cloned from strain CHA0. RsmY, like RsmZ, contains several characteristic GGA motifs. The rsmY gene was expressed in strain CHA0 as a 118 nt transcript which was most abundant in stationary phase, as revealed by Northern blot and transcriptional fusion analysis. Transcription of rsmY was enhanced by the addition of the strain's own supernatant extract containing a quorum-sensing signal and was abolished in gacS or gacA mutants. An rsmA mutation led to reduced rsmY expression, via a gacA-independent mechanism. Overexpression of rsmY restored the expression of target genes (hcnA, aprA) to gacS or gacA mutants. Whereas mutants deleted for either the rsmY or the rsmZ structural gene were not significantly altered in the synthesis of extracellular products (hydrogen cyanide, 2,4-diacetylphloroglucinol, exoprotease), an rsmY rsmZ double mutant was strongly impaired in this production and in its biocontrol properties in a cucumber-Pythium ultimum microcosm. Mobility shift assays demonstrated that multiple molecules of RsmA bound specifically to RsmY and RsmZ RNAs. In conclusion, two small, untranslated RNAs, RsmY and RsmZ, are key factors that relieve RsmA-mediated regulation of secondary metabolism and biocontrol traits in the GacS/GacA cascade of strain CHA0.