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首页> 外文期刊>Biochemistry and Cell Biology >Dimerization of the RelA protein of Escherichia coli.
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Dimerization of the RelA protein of Escherichia coli.

机译:大肠杆菌RelA蛋白的二聚化。

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摘要

The RelA protein of Escherichia coli is a ribosome-associated (p)ppGpp synthetase that is activated by amino acid deprivation. It was recently reported that the activity of RelA is regulated by oligomerization mediated by the C-terminal domain of RelA. The oligomerization of RelA is further characterized in this study. The C-terminal domain consisting of amino acids 455-744, designated 'RelA, formed homooligomers as well as heterooligomers with RelA as demonstrated by copurification of RelA and 'RelA and by an affinity blotting assay. Glutaraldehyde-induced cross-linking indicated that the oligomer was a dimer. The functional analysis of 'RelA was based on a combination of yeast two-hybrid analysis, the determination of the effects of overexpression of 'RelA derivatives on the stringent response, and the cellular localization of the overexpressed 'RelA derivatives. These studies indicated that two regions, designated 'RelA-1 (amino acids 455-538) and 'RelA-2 (amino acids 550-682), were involved in dimerization. The involvement of one of these two regions, RelA-2, is consistent with a previous site-directed mutagenesis study. In addition to dimerization, 'RelA-2 apparently contained the main ribosome-binding domain of RelA. The third region, 'RelA-3 (amino acids 682-744), was not involved in either dimerization or ribosome binding. The overexpression of 'RelA-1 and 'RelA-2, but not 'RelA-3, inhibited the stringent response. These results support the previously proposed model which suggests a role for oligomerization in the regulation of (p)ppGpp synthetase.
机译:大肠杆菌的RelA蛋白是与核糖体相关的(p)ppGpp合成酶,可被氨基酸剥夺激活。最近报道,RelA的活性受RelA的C-末端结构域介导的寡聚作用的调节。在该研究中进一步表征了RelA的寡聚。如通过共纯化RelA和RelA以及通过亲和印迹试验所证实的,由氨基酸455-744组成的C末端结构域,称为RelA,与RelA形成了均聚物以及杂聚物。戊二醛诱导的交联表明该低聚物是二聚体。 'RelA的功能分析是基于酵母双杂交分析,确定'RelA衍生物过表达对严格反应的影响以及过表达的'RelA衍生物的细胞定位的组合。这些研究表明,称为'RelA-1(氨基酸455-538)和'RelA-2(氨基酸550-682)的两个区域参与了二聚化。这两个区域之一RelA-2的参与与先前的定点诱变研究一致。除了二聚化以外,'RelA-2显然还包含RelA的主要核糖体结合结构域。第三区域RelA-3(氨基酸682-744)不参与二聚化或核糖体结合。 'RelA-1和'RelA-2,而不是'RelA-3,过表达抑制了严格的应答。这些结果支持先前提出的模型,该模型表明寡聚在(p)ppGpp合成酶的调节中的作用。

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