首页> 外文期刊>Molecular Microbiology >Identification of activating region (AR) of Escherichia coli LysR-type transcription factor CysB and CysB contact site on RNA polymerase alpha subunit at the cysP promoter.
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Identification of activating region (AR) of Escherichia coli LysR-type transcription factor CysB and CysB contact site on RNA polymerase alpha subunit at the cysP promoter.

机译:鉴定大肠杆菌cysP启动子上RNA聚合酶α亚基上LysR型转录因子CysB和CysB接触位点的激活区(AR)。

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Summary CysB is a LysR-type transcriptional regulator (LTTR) controlling the expression of numerous genes involved in bacterial sulphur assimilation via cysteine biosynthesis. Our previous mutational analysis of CysB identified several residues within the N-terminal domain crucial for DNA-binding function. Here, we focus on the functional significance of CysB residues localized in the turn between the alpha2 and alpha3 helices forming an N-terminal helix-turn-helix motif. On the basis of the characteristics of alanine-substituted mutants, we propose that CysB residues Y27, T28 and S29, lying in this turn region, comprise an 'activating region' (AR) that is crucial for positive control of the cysP promoter, but not for DNA binding and inducer response activities of CysB. Using a library of alanine substitutions in the C-terminal domain of the RNAP alpha subunit (alpha-CTD), we identify several residues in alpha-CTD that are important for CysB-dependent transcription from the cysP promoter. After probingpotential protein-protein contacts in vivo with a LexA-based two-hybrid system, we propose that the '273 determinant' on alpha-CTD, including residues K271 and E273, represents a target for interaction with CysB at the cysP promoter.
机译:概述CysB是一种LysR型转录调节因子(LTTR),可控制通过半胱氨酸生物合成参与细菌硫同化的众多基因的表达。我们先前对CysB的突变分析确定了N末端结构域中对DNA结合功能至关重要的几个残基。在这里,我们集中于CysB残基的功能意义,该残基位于形成N末端螺旋-转-螺旋基序的alpha2和alpha3螺旋之间的转角中。根据丙氨酸取代的突变体的特征,我们建议位于该转向区域的CysB残基Y27,T28和S29包含一个“激活区域”(AR),对cysP启动子的阳性控制至关重要,但是不是针对CysB的DNA结合和诱导剂反应活性。使用在RNAP alpha亚基(alpha-CTD)的C末端域中的丙氨酸取代文库,我们鉴定了alpha-CTD中的几个残基,这些残基对于从cysP启动子的CysB依赖性转录非常重要。在体内潜在的蛋白与基于LexA的双杂交系统接触后,我们提出包括残基K271和E273在内的alpha-CTD上的“ 273决定簇”代表了在cysP启动子上与CysB相互作用的目标。

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