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RsaM:细菌中 AHL 群体感应的独特显性调控因子。

RsaM: a unique dominant regulator of AHL quorum sensing in bacteria.

机构信息

International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.

出版信息

Microbiology (Reading). 2023 Nov;169(11). doi: 10.1099/mic.0.001417.

Abstract

Quorum sensing (QS) in proteobacteria is a mechanism to control gene expression orchestrated by the LuxI/LuxR protein family pair, which produces and responds to -acyl homoserine lactone (AHL) diffusible signal molecules. QS is often regarded as a cell density response via the sensing of/response to the concentrations of AHLs, which are constantly basally produced by bacterial cells. The systems, however, undergo supra-regulation in response to external stimuli and many regulators have been implicated in controlling QS in bacteria, although it remains unclear how most of these regulators and cues contribute to the QS response. One regulator, called RsaM, has been reported in a few proteobacterial species to have a stringent role in the control of AHL QS. RsaMs are small, in the range of 140-170 aa long, and are found in several genera, principally in and . The gene encoding RsaM is always located as an independent transcriptional unit, situated adjacent to QS and/or loci. One of the most remarkable aspects of RsaM is its uniqueness; it does not fall into any of the known bacterial regulatory families and it possesses a distinct and novel fold that does not exhibit binding affinity for nucleic acids or AHLs. RsaM stands out as a distinctive regulator in bacteria, as it is likely to have an important ecological role, as well as unravelling a novel way of gene regulation in bacteria.

摘要

群体感应(QS)在变形菌中是一种由 LuxI/LuxR 蛋白家族对协调控制基因表达的机制,该家族对 -酰基高丝氨酸内酯(AHL)扩散信号分子产生和响应。QS 通常被认为是一种通过对 AHL 浓度的感知/响应来感知细胞密度的机制,而 AHL 则是由细菌细胞不断地基础产生的。然而,该系统会对外界刺激产生超调节,并且已经有许多调节剂被牵涉到控制细菌中的 QS,但大多数这些调节剂和提示如何有助于 QS 反应仍不清楚。一种叫做 RsaM 的调节剂已在一些变形菌物种中被报道在控制 AHL QS 方面具有严格的作用。RsaMs 很小,长度在 140-170 aa 之间,存在于几个属中,主要在 和 中。编码 RsaM 的基因总是作为一个独立的转录单元存在,位于 QS 和/或 基因座的旁边。RsaM 最显著的特点之一是它的独特性;它不属于任何已知的细菌调节家族,并且具有独特而新颖的折叠,不表现出对核酸或 AHL 的结合亲和力。RsaM 在细菌中是一种独特的调节剂,因为它可能具有重要的生态作用,并且揭示了细菌中一种新的基因调控方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90b9/10710839/e7e0bd34dfea/mic-169-1417-g001.jpg

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