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Proteomic analysis of brush-border membrane vesicles isolated from purified proximal convoluted tubules

机译:纯化近端卷积小管中刷边膜囊泡蛋白质组学分析

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Walmsley SJ, Broeckling C, Hess A, Prenni J, Curthoys NP. Proteomic analysis of brush-border membrane vesicles isolated from purified proximal convoluted tubules. Am J Physiol Renal Physiol 298: F1323-F1331, 2010. First published March 10, 2010; ^i>10.1152/ajprenal.00711.2009.—The renal proximal convoluted tubule is the primary site of water, electrolyte and nutrient reabsorption and of active secretion of selected molecules. Proteins in the apical brush-border membrane facilitate these functions and initiate some of the cellular responses to altered renal physiology. The current study uses two-dimensional liquid chromatography/mass spectromThe renal proximal convoluted tubule is the primary site of water, electrolyte and nutrient reabsorption and of active secretion of selected molecules. Proteins in the apical brush-border membrane facilitate these functions and initiate some of the cellular responses to altered renal physiology. The current study uses two-dimensional liquid chromatography/mass spectrometry to compare brush border membrane vesicles isolated from rat renal cortex (BBMVCTX) and from purified proximal convoluted tubules (BBMVPCT). Both proteomic data and Western blot analysis indicate that the BBMVCTX contain apical membrane proteins from cortical cells other than the proximal tubule. This heterogeneity was greatly reduced in the BBMVPCT. Proteomic analysis identified 193 proteins common to both samples, 21 proteins unique to BBMVCTX, and 57 proteins unique to BBMVPCT. Spectral counts were used to quantify relative differences in protein abundance. This analysis identified 42 and 50 proteins that are significantly enriched (p values ≤0.001) in the BBMVCTX and BBMVPCT, respectively. These data were validated by measurement of γ-glutamyltranspeptidase activity and by Western blot analysis. The combined results establish that BBMVPCT are primarily derived from the proximal convoluted tubule (S1 and S2 segments), whereas BBMVCTX include proteins from the proximal straight tubule (S3 segment). Analysis of functional annotations indicated that BBMVPCT are enriched in mitochondrial proteins and enzymes involved in glucose and organic acid metabolism. Thus the current study reports a detailed proteomic analysis of the brush-border membrane of the rat renal proximal convoluted tubule and provides a database for future hypothesis-driven research.
机译:Walmsley SJ,Breckling C,Hess A,Prenni J,Cythoys NP。纯化近端复合小管中刷边膜囊泡的蛋白质组学分析。 AM J Mateiol Renal Physitiol 298:2010年F1323-F1331. 2010年3月10日首次出版; ^ i> 10.1152 / ajprenal.00711.2009.-肾近端卷积小管是水,电解质和营养吸收的主要部位和所选分子的活性分泌。顶端刷边膜中的蛋白质促进这些功能,并开始一些细胞反应对改变的肾生理学。目前的研究采用二维液相色谱/质谱/质谱肾近端卷积小管是水,电解质和营养物重吸收的主要部位和所选分子的活性分泌。顶端刷边膜中的蛋白质促进这些功能,并开始一些细胞反应对改变的肾生理学。目前的研究采用二维液相色谱/质谱法比较从大鼠肾皮质(BBMVCTX)中分离的刷界膜囊泡,并从纯化的近端复合小管(BBMVPCT)。蛋白质组学数据和蛋白质印迹分析表明BBMVCTX含有除近管之外的皮质电池的顶端膜蛋白。在BBMVPCT中大大降低了这种异质性。蛋白质组学分析鉴定了对BBMVCTX独特的样品,21种蛋白质共同的193个蛋白质,以及BBMVPCT的57个蛋白质。光谱计数用于量化蛋白质丰度的相对差异。该分析鉴定了42和50个蛋白,分别在BBMVCTX和BBMVPCT中显着富集(P值≤0.001)。通过测量γ-谷氨酰胺转移酶活性和蛋白质印迹分析来验证这些数据。组合结果确定BBMVPCT主要来自近端卷积小管(S1和S2段),而BBMVCTX包括来自近侧直管(S3区段)的蛋白质。功能注释分析表明BBMVPCT富集在语线粒体蛋白质和参与葡萄糖和有机酸代谢的酶中。因此,目前的研究报告了大鼠肾近端卷积小管的刷界膜的详细蛋白质组学分析,并为未来的假设驱动的研究提供了一种数据库。

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