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费氏弧菌群体感应过程中,LuxR 蛋白中对其转录激活机制至关重要的氨基酸残基。

Amino acid residues in LuxR critical for its mechanism of transcriptional activation during quorum sensing in Vibrio fischeri.

作者信息

Trott A E, Stevens A M

机构信息

Department of Biology, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA.

出版信息

J Bacteriol. 2001 Jan;183(1):387-92. doi: 10.1128/JB.183.1.387-392.2001.

Abstract

PCR-based site-directed mutagenesis has been used to generate 38 alanine-substitution mutations in the C-terminal 41 amino acid residues of LuxR. This region plays a critical role in the mechanism of LuxR-dependent transcriptional activation of the Vibrio fischeri lux operon during quorum sensing. The ability of the variant forms of LuxR to activate transcription of the lux operon was examined by using in vivo assays in recombinant Escherichia coli. Eight recombinant strains produced luciferase at levels less than 50% of that of a strain expressing wild-type LuxR. Western immunoblotting analysis verified that the altered forms of LuxR were expressed at levels equivalent to those of the wild type. An in vivo DNA binding-repression assay in recombinant E. coli was subsequently used to measure the ability of the variant forms of LuxR to bind to the lux box, the binding site of LuxR at the lux operon promoter. All eight LuxR variants found to affect cellular luciferase levels were unable to bind to the lux box. An additional 11 constructs that had no effect on cellular luciferase levels were also found to exhibit a defect in DNA binding. None of the alanine substitutions in LuxR affected activation of transcription of the lux operon without also affecting DNA binding. These results support the conclusion that the C-terminal 41 amino acids of LuxR are important for DNA recognition and binding of the lux box rather than positive control of the process of transcription initiation.

摘要

基于聚合酶链反应(PCR)的定点诱变已用于在LuxR的C末端41个氨基酸残基中产生38个丙氨酸取代突变。该区域在群体感应期间费氏弧菌lux操纵子的LuxR依赖性转录激活机制中起关键作用。通过在重组大肠杆菌中进行体内试验,检测了LuxR变体形式激活lux操纵子转录的能力。八个重组菌株产生的荧光素酶水平低于表达野生型LuxR的菌株的50%。蛋白质免疫印迹分析证实,LuxR的改变形式的表达水平与野生型相当。随后,在重组大肠杆菌中进行体内DNA结合抑制试验,以测量LuxR变体形式与lux框结合的能力,lux框是LuxR在lux操纵子启动子处的结合位点。发现所有八个影响细胞荧光素酶水平的LuxR变体都无法与lux框结合。另外11个对细胞荧光素酶水平没有影响的构建体也被发现存在DNA结合缺陷。LuxR中的丙氨酸取代均未在不影响DNA结合的情况下影响lux操纵子的转录激活。这些结果支持以下结论:LuxR的C末端41个氨基酸对于lux框的DNA识别和结合很重要,而不是转录起始过程的正调控。

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