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Identification of a signalling molecule involved in bacterial intergeneric communication

机译:鉴定涉及细菌和基础通信的信号分子

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The development of complex multispecies communities such as biofilms is controlled by interbacterial communication systems. We have previously reported an intergeneric communication between two oral bacteria, Streptococcus cristatus and Porphyromonas gingivalis, that results in inhibition of fimA expression. Here, we demonstrate that a surface protein, arginine deiminase (ArcA), of S. cristatus serves as a signal that initiates intergeneric communication. An ArcA-deficient mutant of S. cristatus is unable to communicate with P. gingivalis. Furthermore, arginase activity is not essential for the communication, and ArcA retains the ability to repress expression of fimA in the presence of arginine deiminase inhibitors. These results present a novel mechanism by which intergeneric communication in dental biofilms is accomplished.
机译:Biofilms等复杂多层社区的开发由区间通信系统控制。我们之前报道了两种口腔细菌,链球菌嵴和卟啉核苷类牙龈上的代际通信,这导致了FIMA表达的抑制。这里,我们证明了S.Cristatus的表面蛋白,精氨酸脱氨酶(Arca)用作启动代际通信的信号。 S.Cristatus的ArcA缺陷突变体无法与P. Gingivalis通信。此外,氨基酶活性对于通信不是必需的,并且Arca保留在精氨酸脱氨酶抑制剂存在下抑制FIMA的表达的能力。这些结果提出了一种新的机制,通过该机制是完成牙科生物膜中的代际通信。

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