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膜泡传递信号并促进原核生物中的群体活动。

Membrane vesicles traffic signals and facilitate group activities in a prokaryote.

作者信息

Mashburn Lauren M, Whiteley Marvin

机构信息

Department of Periodontics, The University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, USA.

出版信息

Nature. 2005 Sep 15;437(7057):422-5. doi: 10.1038/nature03925.

Abstract

Many bacteria use extracellular signals to communicate and coordinate social activities, a process referred to as quorum sensing. Many quorum signals have significant hydrophobic character, and how these signals are trafficked between bacteria within a population is not understood. Here we show that the opportunistic human pathogen Pseudomonas aeruginosa packages the signalling molecule 2-heptyl-3-hydroxy-4-quinolone (pseudomonas quinolone signal; PQS) into membrane vesicles that serve to traffic this molecule within a population. Removal of these vesicles from the bacterial population halts cell-cell communication and inhibits PQS-controlled group behaviour. We also show that PQS actively mediates its own packaging and the packaging of other antimicrobial quinolines produced by P. aeruginosa into vesicles. These findings illustrate that a prokaryote possesses a signal trafficking system with features common to those used by higher organisms and outlines a novel mechanism for delivery of a signal critical for coordinating group behaviour in P. aeruginosa.

摘要

许多细菌利用细胞外信号进行交流并协调社会活动,这一过程被称为群体感应。许多群体感应信号具有显著的疏水性,而这些信号在群体内的细菌之间是如何运输的尚不清楚。在此,我们表明机会性人类病原体铜绿假单胞菌将信号分子2-庚基-3-羟基-4-喹诺酮(假单胞菌喹诺酮信号;PQS)包装到膜泡中,这些膜泡用于在群体内运输该分子。从细菌群体中去除这些膜泡会停止细胞间通讯并抑制PQS控制的群体行为。我们还表明,PQS积极介导其自身以及铜绿假单胞菌产生的其他抗菌喹啉类物质包装到膜泡中。这些发现表明,一种原核生物拥有一个具有高等生物所使用的共同特征的信号运输系统,并概述了一种对协调铜绿假单胞菌群体行为至关重要的信号传递新机制。

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