首页> 外文期刊>The Journal of biological chemistry >Crystal Structure of SmcR, a Quorum-sensing Master Regulator of Vibrio vulnificus, Provides Insight into Its Regulation of Transcription
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Crystal Structure of SmcR, a Quorum-sensing Master Regulator of Vibrio vulnificus, Provides Insight into Its Regulation of Transcription

机译:SMCR的晶体结构,Quirio Wulnificus的批量传感大师调节器,提供了洞察其转录调控

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Quorum sensing has been implicated as an important global regulatory system controlling the expression of numerous virulence factors in bacterial pathogens. SmcR, a homologue of Vibrio harveyi LuxR, has been proposed as a quorum-sensing master regulator of Vibrio vulnificus, an opportunistic human pathogen. Previous studies demonstrated that SmcR is essential for the survival and pathogenesis of V. vulnificus, indicating that inhibiting SmcR is an attractive approach to combat infections by the bacteria. Here, we determined the crystal structure of SmcR at 2.1 ? resolution. The protein structure reveals a typical TetR superfamily fold consisting of an N-terminal DNA binding domain and a C-terminal dimerization domain. In vivo and in vitro functional analysis of the dimerization domain suggested that dimerization of SmcR is vital for its biological regulatory function. The N-terminal DNA recognition and binding residues were assigned based on the protein structure and the results of in vivo and in vitro mutagenesis experiments. Furthermore, protein-DNA interaction experiments suggested that SmcR may have a sophisticated mechanism that enables the protein to recognize each of its many target operators with different affinities.
机译:法定感测被涉及作为控制细菌病原体中许多毒力因子表达的重要全球性监管系统。 SMCR是一种哈维岛Luxr的同源物,已被提出作为Quirio Wulnificus的Quorum感测的大师调节器,是一个机会的人道主义遗传原。以前的研究表明,SMCR对于V.Vulnificus的存活和发病机制是必不可少的,表明抑制SMCR是一种有吸引力的对抗细菌感染的方法。在这里,我们确定了2.1的SMCR的晶体结构?解析度。蛋白质结构揭示了由N-末端DNA结合结构域和C末端二聚化结构域组成的典型的圆锥超家族折叠。在二聚化结构域的体内和体外功能分析表明SMCR的二聚化对于其生物调节功能至关重要。基于蛋白质结构和体内和体外诱变实验的蛋白质结构分配N-末端DNA识别和结合残基。此外,蛋白质-DNA相互作用实验表明SMCR可能具有复杂的机制,使得蛋白质能够以不同的亲和力识别其许多目标运营商中的每一个。

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