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Identification of a Putative Network of Actin-Associated Cytoskeletal Proteins in Glomerular Podocytes Defined by Co-Purified mRNAs

机译:共同纯化的mRNA定义的肾小球足细胞肌动蛋白相关的细胞骨架蛋白的推定网络的鉴定。

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摘要

The glomerular podocyte is a highly specialized and polarized kidney cell type that contains major processes and foot processes that extend from the cell body. Foot processes from adjacent podocytes form interdigitations with those of adjacent cells, thereby creating an essential intercellular junctional domain of the renal filtration barrier known as the slit diaphragm. Interesting parallels have been drawn between the slit diaphragm and other sites of cell-cell contact by polarized cells. Notably mutations in several genes encoding proteins localized to the foot processes can lead to proteinuria and kidney failure. Mutations in the Wilm's tumor gene (WT1) can also lead to kidney disease and one isoform of WT1, WT1(+KTS), has been proposed to regulate gene expression post-transcriptionally. We originally sought to identify mRNAs associated with WT1(+KTS) through an RNA immunoprecipitation and microarray approach, hypothesizing that the proteins encoded by these mRNAs might be important for podocyte morphology and function. We identified a subset of mRNAs that were remarkably enriched for transcripts encoding actin-binding proteins and other cytoskeletal proteins including several that are localized at or near the slit diaphragm. Interestingly, these mRNAs included those of α-actinin-4 and non-muscle myosin IIA that are mutated in genetic forms of kidney disease. However, isolation of the mRNAs occurred independently of the expression of WT1, suggesting that the identified mRNAs were serendipitously co-purified on the basis of co-association in a common subcellular fraction. Mass spectroscopy revealed that other components of the actin cytoskeleton co-purified with these mRNAs, namely actin, tubulin, and elongation factor 1α. We propose that these mRNAs encode a number of proteins that comprise a highly specialized protein interactome underlying the slit diaphragm. Collectively, these gene products and their interactions may prove to be important for the structural integrity of the actin cytoskeleton in podocytes as well as other polarized cell types.
机译:肾小球足细胞是高度专业化和极化的肾细胞类型,其包含从细胞体延伸的主要过程和足部过程。相邻足细胞的足突与相邻细胞的足突形成叉指,从而形成了称为缝隙隔膜的肾脏滤过屏障的重要细胞间结合结构域。在狭缝隔膜和极化细胞与细胞接触的其他位置之间已绘制出有趣的相似之处。值得注意的是,编码位于足突处的蛋白质的几个基因中的突变会导致蛋白尿和肾衰竭。威尔姆氏肿瘤基因(WT1)中的突变也可能导致肾脏疾病,并且有人提出了WT1的一种同工型WT1(+ KTS)来调节转录后的基因表达。我们最初试图通过RNA免疫沉淀和微阵列方法鉴定与WT1(+ KTS)相关的mRNA,并假设这些mRNA编码的蛋白质可能对足细胞的形态和功能很重要。我们鉴定了一个mRNA的子集,该子集显着地丰富了编码肌动蛋白结合蛋白和其他细胞骨架蛋白的转录本,包括位于裂隙膜片或其附近的几种。有趣的是,这些mRNA包括以肾脏疾病的遗传形式突变的α-actinin-4和非肌肉肌球蛋白IIA。但是,mRNA的分离与WT1的表达无关,这表明在共同的亚细胞级分中,基于共缔合,鉴定出的mRNA是偶然地共纯化的。质谱显示,肌动蛋白细胞骨架的其他成分与这些mRNA共纯化,即肌动蛋白,微管蛋白和延伸因子1α。我们建议这些mRNA编码许多蛋白质,这些蛋白质包括位于狭缝隔膜下方的高度专业化的蛋白质相互作用组。总的来说,这些基因产物及其相互作用对于足细胞以及其他极化细胞类型中肌动蛋白细胞骨架的结构完整性可能是重要的。

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