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足突蛋白的计算机结构表征及肾病综合征相关足突蛋白突变体的评估。

In silico Structural characterization of podocin and assessment of nephrotic syndrome-associated podocin mutants.

作者信息

Mulukala Sandeep Kumar Narasimha, Nishad Rajkishor, Kolligundla Lakshmi Prasanna, Saleem Moin A, Prabhu Nagu Prakash, Pasupulati Anil Kumar

机构信息

Department of Biochemistry, School of Life Sciences, University of Hyderabad, Hyderabad, Telangana, India.

Academic Renal Unit, School of Clinical Sciences, University of Bristol, Bristol, United Kingdom.

出版信息

IUBMB Life. 2016 Jul;68(7):578-88. doi: 10.1002/iub.1515. Epub 2016 May 18.

DOI:10.1002/iub.1515
PMID:27193387
Abstract

Nephrotic syndrome (NS) is manifested by hyperproteinuria, hypoalbuminemia, and edema. NPHS2 that encodes podocin was found to have most mutations among the genes that are involved in the pathophysiology of NS. Podocin, an integral membrane protein belonging to stomatin family, is expressed exclusively in podocytes and is localized to slit-diaphragm (SD). Mutations in podocin are known to be associated with steroid-resistant NS and rapid progression to end-stage renal disease, thus signifying its role in maintaining SD integrity and podocyte function. The structural insights of podocin are not known, and the precise mechanism by which podocin contributes to the architecture of SD is yet to be elucidated. In this study, we deduced a model for human podocin, discussed the details of transmembrane localization and intrinsically unstructured regions, and provide an understanding of how podocin interacts with other SD components. Intraprotein interactions were assessed in wild-type podocin and in some of its mutants that are associated with idiopathic NS. Mutations in podocin alter the innate intraprotein interactions affecting the native structure of podocin and its ability to form critical complex with subpodocyte proteins. © 2016 IUBMB Life, 68(7):578-588, 2016.

摘要

肾病综合征(NS)表现为高蛋白尿、低白蛋白血症和水肿。在参与NS病理生理过程的基因中,编码足突蛋白的NPHS2突变最多。足突蛋白是一种属于气孔蛋白家族的整合膜蛋白,仅在足细胞中表达,并定位于裂孔隔膜(SD)。已知足突蛋白突变与激素抵抗性NS及快速进展至终末期肾病有关,这表明其在维持SD完整性和足细胞功能中的作用。足突蛋白的结构见解尚不清楚,其有助于SD结构形成的精确机制仍有待阐明。在本研究中,我们推导了人足突蛋白的模型,讨论了跨膜定位和内在无序区域的细节,并对足突蛋白如何与其他SD成分相互作用提供了理解。在野生型足突蛋白及其一些与特发性NS相关的突变体中评估了蛋白内相互作用。足突蛋白突变改变了固有的蛋白内相互作用,影响了足突蛋白的天然结构及其与足细胞下蛋白形成关键复合物的能力。©2016国际生物化学与分子生物学联盟生命科学,68(7):578 - 588,2016。

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