LuxS-Dependent AI‑2 Regulates Versatile Functions in Enterococcus faecalis V583

Bacteria utilize a quorum sensing (QS) system to coordinate gene expression by monitoring the concentration of molecules known as autoinducers (AI). In the present study, we confirmed the presence of a LuxS/AI-2 dependent QS system in vancomycin-resistant Enterococcus faecalis V583. Then, the cellul...

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Veröffentlicht in:Journal of proteome research 2012-09, Vol.11 (9), p.4465-4475
Hauptverfasser: Shao, Changlin, Shang, Wei, Yang, Zhan, Sun, Zhongke, Li, Yunmei, Guo, Jing, Wang, Xuesong, Zou, DaYang, Wang, Simiao, Lei, Hong, Cui, Qian, Yin, Zhitao, Li, Xuelian, Wei, Xiao, Liu, Wei, He, Xiang, Jiang, Zheng, Du, Shuangkui, Liao, Xiangru, Huang, Liuyu, Wang, Yufei, Yuan, Jing
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Sprache:eng
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Zusammenfassung:Bacteria utilize a quorum sensing (QS) system to coordinate gene expression by monitoring the concentration of molecules known as autoinducers (AI). In the present study, we confirmed the presence of a LuxS/AI-2 dependent QS system in vancomycin-resistant Enterococcus faecalis V583. Then, the cellular targets controlled by AI-2 were identified by comparative proteomics analysis in order to elucidate the possible role of AI-2 in E. faecalis. Results demonstrated 15 proteins that are differentially expressed upon the addition of AI-2, including proteins involved in metabolism, translation, energy production and/or conversion, and cell wall biogenesis. Glyceraldehyde-3-phosphate dehydrogenase and malate dehydrogenase associated with carbohydrate metabolism and energy production were up-regulated upon inducing by AI-2. In addition, externally added AI-2 could down-regulate acetyl-coenzyme A carboxylase and ornithine carbamoyltransferase, two key enzyme involved in metabolism. All these data suggest that AI-2 signaling may play a role in the regulation of a number of important metabolic properties of E. faecali. We further investigated the role of AI-2 in biofilm formation by E. faecalis, showing the addition of AI-2 to E. faecalis V583 cultures resulted in increased biofilm formation. Our results provide important clues to the role of a LuxS/AI-2 dependent QS system in vancomycin-resistant E. faecalis.
ISSN:1535-3893
1535-3907
DOI:10.1021/pr3002244