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LuxR 家族“独体”:信号分子的单身传感器/调节因子

LuxR-family 'solos': bachelor sensors/regulators of signalling molecules.

作者信息

Subramoni Sujatha, Venturi Vittorio

机构信息

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

出版信息

Microbiology (Reading). 2009 May;155(Pt 5):1377-1385. doi: 10.1099/mic.0.026849-0. Epub 2009 Apr 21.

Abstract

N-Acylhomoserine lactone (AHL) quorum-sensing (QS) signalling is the best-understood chemical language in proteobacteria. In the last 15 years a large amount of research in several bacterial species has revealed in detail the genetic, molecular and biochemical mechanisms underlying AHL signalling. These studies have revealed the role played by protein pairs of the AHL synthase belonging to the LuxI family and cognate LuxR-family AHL sensor-regulator. Proteobacteria however commonly possess a QS LuxR-family protein for which there is no obvious cognate LuxI synthase; these proteins are found in bacteria which possess a complete AHL QS system(s) as well as in bacteria that do not. Scientists are beginning to address the roles played by these proteins and it is emerging that they could allow bacteria to respond to endogenous and exogenous signals produced by their neighbours. AHL QS research thus far has mainly focused on a cell-density response involving laboratory monoculture studies. Recent findings on the role played by the unpaired LuxR-family proteins highlight the need to address bacterial behaviour and response to signals in mixed communities. Here we review recent progress with respect to these LuxR proteins, which we propose to call LuxR 'solos' since they act on their own without the need for a cognate signal generator. Initial investigations have revealed that LuxR solos have diverse roles in bacterial interspecies and interkingdom communication.

摘要

N-酰基高丝氨酸内酯(AHL)群体感应(QS)信号传导是变形菌中最被深入了解的化学语言。在过去15年里,对几种细菌的大量研究详细揭示了AHL信号传导背后的遗传、分子和生化机制。这些研究揭示了属于LuxI家族的AHL合酶和同源LuxR家族AHL传感器调节蛋白对所起的作用。然而,变形菌通常拥有一种QS LuxR家族蛋白,却没有明显的同源LuxI合酶;这些蛋白存在于拥有完整AHL QS系统的细菌中,也存在于没有该系统的细菌中。科学家们开始研究这些蛋白所起的作用,并且逐渐发现它们可能使细菌能够对其邻居产生的内源性和外源性信号作出反应。迄今为止,AHL QS研究主要集中在涉及实验室单培养研究的细胞密度反应上。关于未配对的LuxR家族蛋白所起作用的最新发现凸显了研究混合群落中细菌行为和对信号反应的必要性。在这里,我们综述了关于这些LuxR蛋白的最新进展,我们建议将它们称为LuxR“单蛋白”,因为它们独立发挥作用,无需同源信号发生器。初步研究表明,LuxR单蛋白在细菌种间和跨界通讯中具有多种作用。

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