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血管加压素敏感集合管细胞的深度蛋白质组分析。I. 虚拟蛋白质印迹和分子量分布

Deep proteomic profiling of vasopressin-sensitive collecting duct cells. I. Virtual Western blots and molecular weight distributions.

作者信息

Yang Chin-Rang, Tongyoo Pumipat, Emamian Milad, Sandoval Pablo C, Raghuram Viswanathan, Knepper Mark A

机构信息

Epithelial Systems Biology Laboratory, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland; and.

Epithelial Systems Biology Laboratory, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland; and Inter-Department Program of Biomedical Sciences, Faculty of Graduate School, Chulalongkorn University, Bangkok, Thailand.

出版信息

Am J Physiol Cell Physiol. 2015 Dec 15;309(12):C785-98. doi: 10.1152/ajpcell.00213.2015. Epub 2015 Aug 26.

Abstract

The mouse mpkCCD cell line is a continuous cultured epithelial cell line with characteristics of renal collecting duct principal cells. This line is widely used to study epithelial transport and its regulation. To provide a data resource useful for experimental design and interpretation in studies using mpkCCD cells, we have carried out "deep" proteomic profiling of these cells using three levels of fractionation (differential centrifugation, SDS-PAGE, and HPLC) followed by tandem mass spectrometry to identify and quantify proteins. The analysis of all resulting samples generated 34.6 gigabytes of spectral data. As a result, we identified 6,766 proteins in mpkCCD cells at a high level of stringency. These proteins are expressed over eight orders of magnitude of protein abundance. The data are provided to users as a public data base (https://helixweb.nih.gov/ESBL/Database/mpkFractions/). The mass spectrometry data were mapped back to their gel slices to generate "virtual Western blots" for each protein. For most of the 6,766 proteins, the apparent molecular weight from SDS-PAGE agreed closely with the calculated molecular weight. However, a substantial fraction (>15%) of proteins was found to run aberrantly, with much higher or much lower mobilities than predicted. These proteins were analyzed to identify mechanisms responsible for altered mobility on SDS-PAGE, including high or low isoelectric point, high or low hydrophobicity, physiological cleavage, residence in the lysosome, posttranslational modifications, and expression of alternative isoforms due to alternative exon usage. Additionally, this analysis identified a previously unrecognized isoform of aquaporin-2 with apparent molecular mass <20 kDa.

摘要

小鼠mpkCCD细胞系是一种具有肾集合管主细胞特征的连续培养上皮细胞系。该细胞系广泛用于研究上皮运输及其调节。为了提供一个对使用mpkCCD细胞的研究中的实验设计和解释有用的数据资源,我们使用三级分离(差速离心、SDS-PAGE和HPLC)对这些细胞进行了“深度”蛋白质组分析,随后进行串联质谱分析以鉴定和定量蛋白质。对所有所得样品的分析产生了34.6GB的光谱数据。结果,我们在严格的水平上鉴定出mpkCCD细胞中的6766种蛋白质。这些蛋白质的表达丰度跨越八个数量级。这些数据作为公共数据库(https://helixweb.nih.gov/ESBL/Database/mpkFractions/)提供给用户。质谱数据被映射回其凝胶切片,为每种蛋白质生成“虚拟蛋白质免疫印迹”。对于6766种蛋白质中的大多数,SDS-PAGE显示的表观分子量与计算分子量非常接近。然而,发现相当一部分(>15%)蛋白质的迁移异常,迁移率比预测的高得多或低得多。对这些蛋白质进行分析,以确定导致其在SDS-PAGE上迁移改变的机制,包括高或低等电点、高或低疏水性、生理切割、在溶酶体中的驻留、翻译后修饰以及由于外显子使用替代而产生的替代同工型的表达。此外,该分析鉴定出一种先前未被识别的水通道蛋白2同工型,其表观分子量<20 kDa。

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