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首页> 外文期刊>Journal of Molecular Biology >Context-dependent remodeling of structure in two large protein fragments.
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Context-dependent remodeling of structure in two large protein fragments.

机译:上下文相关的两个大蛋白片段中的结构重塑。

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摘要

Protein folding involves the formation of secondary structural elements from the primary sequence and their association with tertiary assemblies. The relation of this primary sequence to a specific folded protein structure remains a central question in structural biology. An increasing body of evidence suggests that variations in homologous sequence ranging from point mutations to substantial insertions or deletions can yield stable proteins with markedly different folds. Here we report the structural characterization of domain IV (D4) and DeltaD4 (polypeptides with 222 and 160 amino acids, respectively) that differ by virtue of an N-terminal deletion of 62 amino acids (28% of the overall D4 sequence). The high-resolution crystal structures of the monomeric D4 and the dimeric DeltaD4 reveal substantially different folds despite an overall conservation of secondary structure. These structures show that the formation of tertiary structures, even in extended polypeptide sequences, can be highly context dependent, and they serve as a model for structural plasticity in protein isoforms.
机译:蛋白质折叠涉及从一级序列形成二级结构元件以及它们与三级组装的关联。该初级序列与特定折叠蛋白结构的关系仍然是结构生物学中的中心问题。越来越多的证据表明,从点突变到实质性插入或缺失,同源序列的变异可产生具有明显不同倍数的稳定蛋白质。在这里,我们报告结构域IV(D4)和DeltaD4(分别具有222和160个氨基酸的多肽)的结构特征,这些特征由于N端缺失62个氨基酸(占总D4序列的28%)而不同。尽管二级结构的总体保守,单体D4和二聚体DeltaD4的高分辨率晶体结构显示出明显不同的折叠。这些结构表明,即使在延伸的多肽序列中,三级结构的形成也可以高度依赖于上下文,并且它们可以作为蛋白质同工型中结构可塑性的模型。

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