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首页> 外文期刊>Journal of Molecular Biology >Crystal structure and functional analysis of the protein disulfide isomerase-related protein ERp29.
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Crystal structure and functional analysis of the protein disulfide isomerase-related protein ERp29.

机译:蛋白质二硫键异构酶相关蛋白ERp29的晶体结构和功能分析。

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摘要

The protein disulfide isomerase-related protein ERp29 is a putative chaperone involved in processing and secretion of secretory proteins. Until now, however, both the structure and the exact nature of interacting substrates remained unclear. We provide for the first time a crystal structure of human ERp29, refined to 2.9 A, and show that the protein has considerable structural homology to its Drosophila homolog Wind. We show that ERp29 binds directly not only to thyroglobulin and thyroglobulin-derived peptides in vitro but also to the Wind client protein Pipe and Pipe-derived peptides, although it fails to process Pipe in vivo. A monomeric mutant of ERp29 and a D domain mutant in which the second peptide binding site is inactivated also bind protein substrates, indicating that the monomeric thioredoxin domain is sufficient for client protein binding. Indeed, the b domains of ERp29 or Wind, expressed alone, are sufficient for binding proteins and peptides. Interacting peptides have in common two or morearomatic residues, with stronger binding for sequences with overall basic character. Thus, the data allow a view of the two putative peptide binding sites of ERp29 and indicate that the apparent, different processing activity of the human and Drosophila proteins in vivo does not stem from differences in peptide binding properties.
机译:蛋白质二硫键异构酶相关蛋白ERp29是推测的伴侣蛋白,参与分泌蛋白的加工和分泌。然而,直到现在,相互作用底物的结构和确切性质仍不清楚。我们首次提供了人ERp29的晶体结构,精制至2.9 A,并表明该蛋白与其果蝇同源物Wind具有相当的结构同源性。我们显示,ERp29不仅直接与甲状腺球蛋白和甲状腺球蛋白衍生的肽体外结合,而且与Wind客户蛋白Pipe和Pipe衍生的肽直接结合,尽管它无法在体内处理Pipe。 ERp29的单体突变体和第二个肽结合位点被失活的D结构域突变体也结合蛋白质底物,表明该单体硫氧还蛋白结构域足以与客户蛋白质结合。实际上,单独表达的ERp29或Wind的b结构域足以结合蛋白质和肽。相互作用的肽共有两个或多个芳香族残基,对具有整体基本特征的序列具有更强的结合力。因此,数据允许观察到ERp29的两个假定的肽结合位点,并表明人和果蝇蛋白在体内的明显不同的加工活性并非源于肽结合特性的差异。

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