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一种独特的双组分群体感应系统在鳗弧菌中发挥作用。

A distinctive dual-channel quorum-sensing system operates in Vibrio anguillarum.

作者信息

Croxatto Antony, Pride John, Hardman Andrea, Williams Paul, Cámara Miguel, Milton Debra L

机构信息

Department of Molecular Biology, Umeå University, S-901 87 Umeå, Sweden.

出版信息

Mol Microbiol. 2004 Jun;52(6):1677-89. doi: 10.1111/j.1365-2958.2004.04083.x.

Abstract

Many bacterial cells communicate using diffusible signal molecules to monitor cell population density via a process termed quorum sensing. In marine Vibrio species, the Vibrio harveyi-type LuxR protein is a key player in a quorum-sensing phosphorelay cascade, which controls the expression of virulence, symbiotic and survival genes. Previously, we characterized Vibrio anguillarum homologues of LuxR (VanT) and LuxMN (VanMN) and, in this study, we have identified homologues of LuxPQ (VanPQ) and LuxOU (VanOU). In contrast to other Vibrio species, vanT was expressed at low cell density and showed no significant induction as the cell number increased. In addition, although the loss of VanO increased vanT expression, the loss of VanU, unexpectedly, decreased it. Both VanN and VanQ were required for repression of vanT even in a vanU mutant, suggesting an alternative route for VanNQ signal transduction other than via VanU. VanT negatively regulated its own expression by binding and repressing the vanT promoter and by binding and activating the vanOU promoter. The signal relay results in a cellular response as expression of the metalloprotease, empA, was altered similar to that of vanT in all the mutants. Consequently, the V. anguillarum quorum-sensing phosphorelay systems work differently from those of V. harveyi and may be used to limit rather than induce vanT expression.

摘要

许多细菌细胞利用可扩散的信号分子进行通讯,通过一种称为群体感应的过程来监测细胞群体密度。在海洋弧菌属物种中,哈氏弧菌型LuxR蛋白是群体感应磷酸化信号传递级联反应中的关键因子,该级联反应控制着毒力、共生和生存基因的表达。此前,我们对LuxR(VanT)和LuxMN(VanMN)的鳗弧菌同源物进行了表征,在本研究中,我们鉴定出了LuxPQ(VanPQ)和LuxOU(VanOU)的同源物。与其他弧菌属物种不同,vanT在低细胞密度下表达,并且随着细胞数量增加未显示出明显的诱导作用。此外,尽管VanO的缺失增加了vanT的表达,但出乎意料的是,VanU的缺失却降低了vanT的表达。即使在vanU突变体中,VanN和VanQ对于vanT的抑制都是必需的,这表明VanNQ信号转导存在一条不通过VanU的替代途径。VanT通过结合并抑制vanT启动子以及结合并激活vanOU启动子来负向调节其自身的表达。信号传递导致细胞产生反应,因为金属蛋白酶empA的表达在所有突变体中与vanT的表达变化相似。因此,鳗弧菌的群体感应磷酸化信号传递系统与哈氏弧菌的不同,可能用于限制而非诱导vanT的表达。

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