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首页> 外文期刊>Nucleic acids research >Construction and functional analyses of a comprehensive σ54 site-directed mutant library using alanine–cysteine mutagenesis
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Construction and functional analyses of a comprehensive σ54 site-directed mutant library using alanine–cysteine mutagenesis

机译:利用丙氨酸-半胱氨酸诱变的完整σ54定点突变体文库的构建和功能分析

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摘要

The σ54 factor associates with core RNA polymerase (RNAP) to form a holoenzyme that is unable to initiate transcription unless acted on by an activator protein. σ54 is closely involved in many steps of activator-dependent transcription, such as core RNAP binding, promoter recognition, activator interaction and open complex formation. To systematically define σ54 residues that contribute to each of these functions and to generate a resource for site specific protein labeling, a complete mutant library of σ54 was constructed by alanine–cysteine scanning mutagenesis. Amino acid residues from 3 to 476 of Cys(-)σ54 were systematically mutated to alanine and cysteine in groups of two adjacent residues at a time. The influences of each substitution pair upon the functions of σ54 were analyzed in vivo and in vitro and the functions of many residues were revealed for the first time. Increased σ54 isomerization activity seldom corresponded with an increased transcription activity of the holoenzyme, suggesting the steps after σ54 isomerization, likely to be changes in core RNAP structure, are also strictly regulated or rate limiting to open complex formation. A linkage between core RNAP-binding activity and activator responsiveness indicates that the σ54-core RNAP interface changes upon activation.
机译:σ 54 因子与核心RNA聚合酶(RNAP)结合形成全酶,除非受到激活蛋白的作用,否则其无法启动转录。 σ 54 与激活子依赖性转录的许多步骤密切相关,例如核心RNA结合,启动子识别,激活子相互作用和开放复合物形成。为了系统地定义有助于每个功能的σ 54 残基并生成用于位点特异性蛋白质标记的资源,丙氨酸构建了完整的σ 54 突变体文库–半胱氨酸扫描诱变。 Cys(-)σ 54 的3到476个氨基酸残基被系统地突变为两个相邻残基组中的丙氨酸和半胱氨酸。在体内和体外分析了每个取代对对σ 54 功能的影响,并首次揭示了许多残基的功能。 σ 54 异构化活性的提高很少与全酶的转录活性相对应,这表明σ 54 异构化后的步骤(可能是核心RNAP结构的改变)也是严格的调节或限制速​​率以形成开放的复合物。核心RNAP结合活性和激活剂响应性之间的联系表明σ 54 -核心RNAP界面在激活时发生变化。

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