首页> 外文期刊>Journal of Molecular Biology >CONTEXT DEPENDENCE OF MUTATIONAL EFFECTS IN A PROTEIN - THE CRYSTAL STRUCTURES OF THE V351, 147V AND V351/147V GENE V PROTEIN CORE MUTANTS
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CONTEXT DEPENDENCE OF MUTATIONAL EFFECTS IN A PROTEIN - THE CRYSTAL STRUCTURES OF THE V351, 147V AND V351/147V GENE V PROTEIN CORE MUTANTS

机译:蛋白质中突变效应的上下文相关性-V351、147V和V351 / 147V基因V蛋白质核心突变体的晶体结构

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摘要

The basis for the context dependence of the effects of core mutations on protein stability was investigated by comparing the structures of three gene V protein mutants with that of the wild-type protein. We previously examined a ''swapped'' mutant in which core residues Va135 and Ile47 were simply reserved so that the mutant had no hydrophobicity change from the native protein. The swapped mutant was destabilized by 3 kcal/mol per gene V protein dimer relative to the wild-type protein, demonstrating that factors other than hydrophobicity must make substantial contributions to the effects of mutations on the stability of the protein. Here we have determined the structure of this swapped mutant (V35I/147V) as well as those of the two constituent mutants (V35I and 147V). We find that the structures of the mutant proteins are very similar to that of the wild-type protein except for the necessary addition or deletion of methylene groups and for slight positional shifts of atoms around each mutated residue. The structure of the double mutant is a composite of the structures of the two single mutants. In the mutant structures, the V35I mutation fills a cavity that exists in the wild-type protein and the 147V mutation creates a new cavity. The structures oi the mutants indicate further that the reason the V35I and 147V mutations do not have opposite effects on stability is that the cavity in the wild-type protein filled by the V35I mutation is not optimally shaped for accommodating the additional methylene group of the isoleucine. These results support the concepts that the details of core packing have substantial influence on the effects of core mutations on protein stability and that these packing effects are major determinants of the context dependence of core mutation effects on stability. (C) 1996 Academic Press Limited. [References: 52]
机译:通过比较三种基因V蛋白突变体与野生型蛋白的结构,研究了核心突变对蛋白稳定性的背景依赖性。我们之前检查了“交换”突变体,其中仅保留了核心残基Va135和Ile47,因此该突变体与天然蛋白质相比没有疏水性变化。相对于野生型蛋白,交换的突变体每​​个基因V蛋白二聚体不稳定3 kcal / mol,表明疏水性以外的因素必须对突变对蛋白稳定性的影响做出实质性贡献。在这里,我们确定了该交换突变体(V35I / 147V)以及两个组成突变体(V35I和147V)的结构。我们发现突变蛋白的结构与野生型蛋白非常相似,除了亚甲基的必要添加或缺失以及每个突变残基周围原子的轻微位置偏移。双突变体的结构是两个单突变体的结构的复合。在突变体结构中,V35I突变填充了野生型蛋白中存在的空腔,而147V突变则产生了一个新的空腔。突变体的结构进一步表明,V35I和147V突变对稳定性没有相反影响的原因是,由V35I突变填充的野生型蛋白质中的空洞的形状无法适应异亮氨酸的其他亚甲基。这些结果支持以下概念:核心包装的细节对核心突变对蛋白质稳定性的影响具有实质性影响,并且这些堆积效果是核心突变对稳定性的背景依赖性的主要决定因素。 (C)1996 Academic Press Limited。 [参考:52]

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