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对一名患有威尔姆斯肿瘤抑制基因WT1突变的迪尼-德拉斯综合征患者的肾小球足细胞进行的蛋白质组学研究。

A proteomic investigation of glomerular podocytes from a Denys-Drash syndrome patient with a mutation in the Wilms tumour suppressor gene WT1.

作者信息

Viney Rebecca L, Morrison Avril A, van den Heuvel Lambert P, Ni Lan, Mathieson Peter W, Saleem Moin A, Ladomery Michael R

机构信息

Bristol Genomics Research Institute, Centre for Research in Biomedicine, Faculty of Applied Sciences, University of the West of England, Bristol, UK.

出版信息

Proteomics. 2007 Mar;7(5):804-15. doi: 10.1002/pmic.200600666.

Abstract

Glomerular podocytes are essential for blood filtration in the kidney underpinned by their unique cytoskeletal morphology. An increasing number of kidney diseases are being associated with key podocyte abnormalities. The Wilms tumour suppressor gene (WT1) encodes a zinc finger protein with a crucial role in normal kidney development; and in the adult, WT1 is required for normal podocyte function. Denys-Drash Syndrome (DDS) results from mutations affecting the zinc finger domain of WT1. The aim of this study was to undertake, for the first time, a proteomic analysis of cultured human podocytes; and to analyse the molecular changes in DDS podocytes. The morphology of DDS podocytes was highly irregular, reminiscent of a fibroblastic appearance. A reference 2-D gel was generated, and 75 proteins were identified of which 43% involved in cytoskeletal architecture. The DDS and wild-type proteomes were compared by 2-D DIGE. The level of 95.6% of proteins was unaltered; but 4.4% were altered more than two-fold. A sample of proteins involved in cytoskeletal architecture appeared to be misexpressed in DDS podocytes. Consistent with this finding, overall levels of filamentous actin also appeared reduced in DDS podocytes. We conclude that one of WT1 functions in podocytes is to regulate the expression of key components and regulators of the cytoskeleton.

摘要

肾小球足细胞因其独特的细胞骨架形态而对肾脏的血液滤过至关重要。越来越多的肾脏疾病与关键的足细胞异常有关。威尔姆斯肿瘤抑制基因(WT1)编码一种锌指蛋白,在正常肾脏发育中起关键作用;在成体中,WT1是正常足细胞功能所必需的。迪尼斯-德拉什综合征(DDS)由影响WT1锌指结构域的突变引起。本研究的目的是首次对培养的人足细胞进行蛋白质组学分析;并分析DDS足细胞中的分子变化。DDS足细胞的形态高度不规则,类似成纤维细胞外观。生成了一张参考二维凝胶,并鉴定出75种蛋白质,其中43%与细胞骨架结构有关。通过二维差异凝胶电泳(2-D DIGE)比较了DDS和野生型蛋白质组。95.6%的蛋白质水平未改变;但4.4%的蛋白质变化超过两倍。一组参与细胞骨架结构的蛋白质在DDS足细胞中似乎表达异常。与这一发现一致,DDS足细胞中丝状肌动蛋白的总体水平也似乎降低。我们得出结论,WT1在足细胞中的功能之一是调节细胞骨架关键成分和调节因子的表达。

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