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首页> 外文期刊>Journal of Molecular Biology >Crystal structure of prostate secretory protein PSP94 shows an edge-to-edge association of two monomers to form a homodimer.
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Crystal structure of prostate secretory protein PSP94 shows an edge-to-edge association of two monomers to form a homodimer.

机译:前列腺分泌蛋白PSP94的晶体结构显示了两个单体的边缘到边缘缔合以形成同型二聚体。

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Several recent genome-wide association studies have linked the human MSMB gene, encoding prostate secretory protein of 94 residues (PSP94), with prostate cancer susceptibility. PSP94 is one of the most abundant proteins from prostatic secretions and a primary constituent of human semen. PSP94 suppresses tumor growth and metastasis, and its expression gradually decreases during progression of the prostate cancer. It is a rapidly evolving protein with homologues present in several species with 10 conserved cysteine residues. PSP94 homologues show high-affinity binding with different proteins from the cysteine-rich secretory protein family, some of which have been shown to be ion channel blockers. Here, we report the crystal structure of human PSP94 at 2.3 A resolution. The structure shows that the amino and the carboxyl ends of the polypeptide chain are held in close proximity facing each other. A strong hydrogen bond between these ends, which are located respectively on the first and the last beta-strands, leads to formation of an almost straight edge in PSP94 structure. Crystal structure shows that these edges from two PSP94 monomers associate in antiparallel fashion, leading to formation of a dimer. Our studies further show that dimers dissociate into monomers at acidic pH, possibly through distortion of the straight edge. Further, based on several observations, we propose that PSP94 binds to cysteine-rich secretory proteins and immunoglobulin G through the same edge, which is involved in the formation of PSP94 dimeric interface.
机译:最近的几项全基因组关联研究已将编码94个残基的前列腺分泌蛋白(PSP94)的人类MSMB基因与前列腺癌易感性联系起来。 PSP94是前列腺分泌物中最丰富的蛋白质之一,是人精液的主要成分。 PSP94抑制肿瘤的生长和转移,其表达在前列腺癌进展期间逐渐降低。它是一种快速进化的蛋白质,在几个物种中都具有同源物,具有10个保守的半胱氨酸残基。 PSP94同源物显示出与富含半胱氨酸的分泌蛋白家族的不同蛋白的高亲和力结合,其中一些蛋白已被证明是离子通道阻滞剂。在这里,我们以2.3 A分辨率报告人PSP94的晶体结构。该结构表明,多肽链的氨基和羧基末端彼此非常靠近。这些末端之间分别位于第一个和最后一个β链上的强氢键会导致在PSP94结构中形成几乎笔直的边缘。晶体结构显示,来自两个PSP94单体的这些边缘以反平行方式缔合,导致形成二聚体。我们的研究进一步表明,二聚体在酸性pH下会分解为单体,这可能是由于直边变形所致。此外,基于一些观察,我们提出PSP94通过同一边缘与富含半胱氨酸的分泌蛋白和免疫球蛋白G结合,这与PSP94二聚体界面的形成有关。

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