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首页> 外文期刊>Biochemical and Biophysical Research Communications >Probing the stability and mechanism for folding of the GrpE1-112 tetrameric deletion mutant of the GrpE protein from E. coli
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Probing the stability and mechanism for folding of the GrpE1-112 tetrameric deletion mutant of the GrpE protein from E. coli

机译:探索大肠杆菌GrpE蛋白GrpE1-112四聚体缺失突变体折叠的稳定性和机制

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摘要

Insight into the stability and folding of oligomeric proteins is essential to the understanding of protein folding, especially since the majority of proteins found in nature are oligomeric. A deletion mutant of the GrpE protein from Escherichia coli, that contains the first 112 residues (GrpE1-112) of 197 total, is an oligomeric protein forming a tetrameric structure. A four-helix bundle structure is formed via the interaction of an α-helix (22 amino acids in length) from each monomer. Using both thermal and chemical (urea) denaturation studies, the GrpE1-112 protein has rather low stability with a T m of unfolding of 37°C, a C m (urea) of 1.3M, and a ΔG unfolding of 8.4kJmol -1. Investigation into the folding pathway using circular dichroism (CD) stopped-flow revealed a two step process with a fast first phase (k refolding=8.0×10 6s -1M -1) forming a multimeric intermediate that possesses significant α-helical content followed by a slow, first order, step forming the folded tetramer.
机译:深入了解寡聚蛋白质的稳定性和折叠对于理解蛋白质折叠至关重要,尤其是因为自然界中发现的大多数蛋白质都是寡聚的。大肠杆菌中GrpE蛋白的缺失突变体是一个寡聚蛋白,形成四聚体结构,该突变体包含前197个残基(GrpE1-112),共197个残基。通过每个单体的α-螺旋(长度为22个氨基酸)的相互作用,形成了四螺旋束结构。使用热和化学(尿素)变性研究,GrpE1-112蛋白具有相当低的稳定性,T m的展开温度为37°C,C m(尿素)的展开时间为1.3M,ΔG展开的水平为8.4kJmol -1 。使用圆二色性(CD)停止流对折叠途径进行的研究显示出一个两步过程,该过程具有快速的第一相(k重折叠= 8.0×10 6s -1M -1),形成具有明显α-螺旋含量的多聚中间体,然后形成折叠的四聚体的缓慢的一阶步骤。

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