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首页> 外文期刊>Biochemical and Biophysical Research Communications >Solution NMR structure and ligand identification of human Gas7 SH3 domain reveal a typical SH3 fold but a non-canonical ligand-binding mode
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Solution NMR structure and ligand identification of human Gas7 SH3 domain reveal a typical SH3 fold but a non-canonical ligand-binding mode

机译:溶液NMR结构和人气7 SH3结构域的配体鉴定揭示了典型的SH3折叠,而是非典型的配体结合模式

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Growth arrest specific 7 (Gas7) protein is a cytoskeleton regulator playing a crucial role in neural cell development and function, and has been implicated in Alzheimer disease, schizophrenia and cancers. In human, three Gas7 isoforms can be expressed from a single Gas7 gene, while only the longest isoform, hGas7c, possesses an SH3 domain at the N-terminus. To date, the structure and function of hGas7 SH3 domain are still unclear. Here, we reported the solution NMR structure of hGas7 SH3 domain (hGas7-SH3), which displays a typical SH3 beta-barrel fold comprising five beta-strands and one 3(10)-helix. Structural and sequence comparison showed that hGas7-SH3 shares high similarity with Abl SH3 domain, which binds to a high-affinity proline-rich peptide P41 in a canonical SH3-ligand binding mode through two hydrophobic pockets and a specificity site in the RT-loop. However, unlike Abl-SH3, only six residues in the RT-loop and two residues adjacent to but not in the two hydrophobic pockets of hGas7-SH3 showed significant chemical shift perturbations in NMR titrations, suggesting a low affinity and a non canonical binding mode of hGas7-SH3 for P41. Furthermore, four peptides selected from phage-displayed libraries also bound weakly to hGas7-SH3, and the binding region of hGas7-SH3 was mainly located in the RT-loop as well. The ligand identifications through structural similarity searching and peptide library screening in this study imply that although hGas7-SH3 adopts a typical SH3 fold, it probably possesses distinctive ligand-binding specificity. (C) 2019 Elsevier Inc. All rights reserved.
机译:生长逮捕特异性7(Gas7)蛋白是一种在神经细胞发育和功能中发挥至关重要作用的细胞骨架调节剂,并且涉及阿尔茨海默病,精神分裂症和癌症。在人中,三种气体7同种型可以从单个气体7基因表达,而只有最长的同种型HGAS7C,在N-末端具有SH3结构域。迄今为止,HGAS7 SH3域的结构和功能尚不清楚。在这里,我们报道了HGAS7 SH3结构域(HGAS7-SH3)的溶液NMR结构,其显示典型的SH3β-镜筒折叠,其包含五种β-股和一个3(10) - ε。结构和序列比较表明,HGAS7-SH3与ABL SH3结构域共享高相似性,其通过两个疏水袋和RT环中的特异性位点与典型的SH3-配体结合模式结合到高亲和力脯氨酸富含肽P41中。然而,与ABL-SH3不同,RT环中只有六个残基和邻近HGAS7-SH3的两个疏水袋相邻的残留物,在NMR滴定中显示出显着的化学变化扰动,表明低亲和力和非规范结合模式HGAS7-SH3用于P41。此外,从噬菌体显示的文库中选择的四种肽也弱到HGAS7-SH3,HGAS7-SH3的结合区域也主要位于RT环中。本研究中的结构相似性搜索和肽文库筛选的配体鉴定意味着虽然HGAS7-SH3采用典型的SH3折叠,但它可能具有独特的配体结合特异性。 (c)2019 Elsevier Inc.保留所有权利。

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