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     <dc:title xml:lang="fr">Caractérisation du rôle d’un ARN régulateur, médiateur du stress de la paroi et du métabolisme du galactose chez Staphylococcus aureus</dc:title>
     <dcterms:alternative xml:lang="en">Characterization of a small RNA mediating cell wall stress and galactose metabolism in Staphylococcus aureus</dcterms:alternative>
     <dc:subject xml:lang="fr">Staphylococcus aureus</dc:subject><dc:subject xml:lang="fr">ARN régulateur</dc:subject><dc:subject xml:lang="fr">RsaOI</dc:subject><dc:subject xml:lang="fr">métabolisme du galactose</dc:subject><dc:subject xml:lang="fr">réponse aux stress</dc:subject><dc:subject xml:lang="fr">glycopeptides</dc:subject><dc:subject xml:lang="fr">stress acide</dc:subject>
     <dc:subject xml:lang="en">Staphylococcus aureus</dc:subject><dc:subject xml:lang="en">small RNA</dc:subject><dc:subject xml:lang="en">RsaOI</dc:subject><dc:subject xml:lang="en">galactose metabolism</dc:subject><dc:subject xml:lang="en">stress response</dc:subject><dc:subject xml:lang="en">glycopeptides</dc:subject><dc:subject xml:lang="en">acidic stress</dc:subject><tef:sujetRameau><tef:vedetteRameauNomCommun>
						<tef:elementdEntree autoriteSource="Sudoc" autoriteExterne="02778553X">Staphylocoque doré</tef:elementdEntree>
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						<tef:elementdEntree autoriteSource="Sudoc" autoriteExterne="261229303">ARN régulateur</tef:elementdEntree>
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						<tef:elementdEntree autoriteSource="Sudoc" autoriteExterne="030002419">Galactose</tef:elementdEntree><tef:subdivision autoriteSource="Sudoc" type="subdivisionDeSujet" autoriteExterne="027314863">Métabolisme</tef:subdivision>
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						<tef:elementdEntree autoriteSource="Sudoc" autoriteExterne="031461824">Glycopeptides</tef:elementdEntree>
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     <dcterms:abstract xml:lang="fr">Staphylococcus aureus est une bactérie pathogène redoutable, dotée d'une remarquable capacité d'adaptation. Grâce à une régulation génique complexe, cette bactérie déploie de nombreux mécanismes pour survivre aux conditions stressantes. Les ARN régulateurs (ARNrég) figurent parmi les acteurs de cette réponse adaptative, modulant l'expression de leurs cibles au niveau post-transcriptionnel et contribuant ainsi à une réponse rapide et ciblée. Parmi les ARNrég identifiés chez S. aureus, certains se distinguent par leur sensibilité environnementale, étant exprimés en réponse à des conditions spécifiques. Ce travail s’est focalisé sur la caractérisation de RsaOI, un ARNrég issu d’un environnement génétique fortement sollicité lors de stress environnementaux variés. RsaOI est induit dans des conditions de stress affectant la paroi, dont l’acidification et l’exposition aux glycopeptides. Son accumulation est dépendante du système à deux composants VraSR, connu pour son rôle majeur dans la réponse aux antibiotiques ciblant la paroi. L’étude des cibles de RsaOI, réalisée grâce à des approches omiques et la méthode MAPS, a révélé son implication dans des processus essentiels : la réparation de l'ADN, la dynamique de la paroi, ainsi que le métabolisme. Parmi ces cibles figure l’opéron lac, impliqué dans la métabolisation du galactose et dont l'activité influence la structure du peptidoglycane. Dans ce travail, RsaOI apparait comme un médiateur agissant à l'interface entre la réponse au stress de la paroi et la régulation métabolique.</dcterms:abstract>
     <dcterms:abstract xml:lang="en">Staphylococcus aureus is a highly adaptable pathogenic bacterium capable of surviving in stressful conditions encountered during infection. This adaptability is driven by complex gene regulation systems, including small RNA (sRNA). These small RNA molecules play an important role in helping the bacterium respond quickly and precisely by controlling the expression of specific target genes. Some sRNA in S. aureus are particularly sensitive to environmental changes and are activated only under certain conditions. This study focuses on RsaOI, a sRNA produced from a genetic region that is highly responsive to different environmental stresses. RsaOI is strongly activated during cell wall stress, such as acidic conditions or exposure to glycopeptide antibiotics. Its expression is controlled by the VraSR two-component system, a key regulator of cell wall damage responses. Using advanced methods like omics analyses and MAPS, we identified several important functions of RsaOI. It influences processes such as DNA repair, cell wall remodeling, and metabolism. One notable target is the lac operon, which is involved in breaking down galactose and plays a role in maintaining the structure of the bacterial cell wall. This research shows that RsaOI acts as a bridge between the bacterial responses to cell wall stress and changes in metabolism.</dcterms:abstract>
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