首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >The Vibrio harveyi master quorum-sensing regulator LuxR a TetR-type protein is both an activator and a repressor: DNA recognition and binding specificity at target promoters
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The Vibrio harveyi master quorum-sensing regulator LuxR a TetR-type protein is both an activator and a repressor: DNA recognition and binding specificity at target promoters

机译:哈维弧菌主要群体感应调节剂LuxRTetR型蛋白既是激活剂又是阻遏剂:目标启动子的DNA识别和结合特异性

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摘要

Quorum sensing is the process of cell-to-cell communication by which bacteria communicate via secreted signal molecules called autoinducers. As cell population density increases, the accumulation of autoinducers leads to co-ordinated changes in gene expression across the bacterial community. The marine bacterium, Vibrio harveyi, uses three autoinducers to achieve intra-species, intra-genera and inter-species cell–cell communication. The detection of these autoinducers ultimately leads to the production of LuxR, the quorum-sensing master regulator that controls expression of the genes in the quorum-sensing regulon. LuxR is a member of the TetR protein superfamily; however, unlike other TetR repressors that typically repress their own gene expression and that of an adjacent operon, LuxR is capable of activating and repressing a large number of genes. Here, we used protein binding microarrays and a two-layered bioinformatics approach to show that LuxR binds a 21 bp consensus operator with dyad symmetry. In vitro and in vivo analyses of two promoters directly regulated by LuxR allowed us to identify those bases that are critical for LuxR binding. Together, the in silico and biochemical results enabled us to scan the genome and identify novel targets of LuxR in V. harveyi and thus expand the understanding of the quorum-sensing regulon.
机译:群体感应是细胞与细胞之间交流的过程,细菌通过该过程通过称为自动诱导物的分泌信号分子进行交流。随着细胞种群密度的增加,自诱导剂的积累导致整个细菌群落中基因表达的协调变化。海洋细菌哈维弧菌利用三种自动诱导剂实现种内,属内和种间细胞间的通讯。这些自动诱导剂的检测最终导致产生LuxR,即群体感应主调节剂,控制着群体感应调节子中基因的表达。 LuxR是TetR蛋白超家族的成员;但是,与其他通常抑制自身和相邻操纵子基因表达的TetR抑制子不同,LuxR能够激活和抑制大量基因。在这里,我们使用蛋白质结合微阵列和两层生物信息学方法来证明LuxR结合具有dyad对称性的21 bp共识操纵子。对由LuxR直接调控的两个启动子的体外和体内分析使我们能够鉴定出对于LuxR结合至关重要的碱基。在一起的计算机化学和生物化学结果使我们能够扫描基因组并鉴定哈氏弧菌中LuxR的新靶标,从而扩展了对群体感应调节子的了解。

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