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Divergent functional roles of D-amino acids secreted by Vibrio cholerae

机译:由霍乱分泌的D-氨基酸发散的功能作用

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The L-forms of amino acids are used in all kingdoms of life to synthesize proteins. However, the bacterium Vibrio cholerae, the causative agent of cholera, produces D-amino acids which are released to the environment at millimolar concentrations. We baptized these D-amino acids as non-canonical D-amino acids (NCDAAs) since they are different from those (i.e. D-alanine and D-glutamate) normally present in the bacterial cell wall. In V. cholerae, production of NCDAAs relies on the BsrV enzyme, a periplasmic broad spectrum racemase. BsrV multispecific activity, produces of a wide range of distinct D-amino acids. Using a combination of genetics and molecular physiology approaches we have demonstrated that NCDAAs target different cellular processes which may function as part of a cooperative strategy in vibrio communities to protect non-producing members from competing bacteria. Because NCDAA production is widespread in bacteria, we anticipate that NCDAAs are relevant modulators of microbial subpopulations in diverse ecosystems.
机译:L-形式的氨基酸用于所有王国界面合成蛋白质。然而,霍乱的致胆仁的致病剂的细菌弧菌霍乱产生D-氨基酸,其在毫摩尔浓度下释放到环境中。我们将这些D-氨基酸作为非规范化D-氨基酸(NCDAAs)预制,因为它们与通常存在于细菌细胞壁中的那些(即D-丙氨酸和D-谷氨酸)。在V.霍乱,NCDAAs的生产依赖于BSRV酶,一种周质宽谱消除物。 BSRV多特异性活动,产生各种不同的D-氨基酸。使用遗传学和分子生理学方法的组合,我们证明了NCDAAS针对不同的细胞过程,该过程可以作为振动社区中的合作策略的一部分,以保护非生成会员来自竞争细菌。由于NCDAA生产在细菌中普遍,我们预计NCDAAS是多种生态系统中的微生物群的相关调节剂。

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