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Label-free proteomic methodology for the analysis of human kidney stone matrix composition

机译:用于人类肾结石基质成分分析的无标记蛋白质组学方法

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Background Kidney stone matrix protein composition is an important yet poorly understood aspect of nephrolithiasis. We hypothesized that this proteome is considerably more complex than previous reports have indicated and that comprehensive proteomic profiling of the kidney stone matrix may demonstrate relevant constitutive differences between stones. We have analyzed the matrices of two unique human calcium oxalate stones (CaOx-Ia and CaOx-Id) using a simple but effective chaotropic reducing solution for extraction/solubilization combined with label-free quantitative mass spectrometry to generate a comprehensive profile of their proteomes, including physicochemical and bioinformatic analysis.` Results We identified and quantified 1,059 unique protein database entries in the two human kidney stone samples, revealing a more complex proteome than previously reported. Protein composition reflects a common range of proteins related to immune response, inflammation, injury, and tissue repair, along with a more diverse set of proteins unique to each stone. Conclusion The use of a simple chaotropic reducing solution and moderate sonication for extraction and solubilization of kidney stone powders combined with label-free quantitative mass spectrometry has yielded the most comprehensive list to date of the proteins that constitute the human kidney stone proteome.
机译:背景肾结石基质蛋白成分是肾结石病的一个重要但尚未广为人知的方面。我们假设该蛋白质组比以前的报道表明的复杂得多,并且肾结石基质的全面蛋白质组学分析可能表明结石之间的相关组成差异。我们使用一种简单但有效的离液还原性提取/增溶还原溶液,结合无标记的定量质谱分析了两种独特的人类草酸钙结石(CaOx-Ia和CaOx-Id)的基质,以生成其蛋白质组的全面概况,结果我们在两个人肾结石样本中鉴定并量化了1,059个独特的蛋白质数据库条目,揭示了比以前报道的更为复杂的蛋白质组。蛋白质组成反映了与免疫反应,炎症,损伤和组织修复相关的常见蛋白质范围,以及每种结石所特有的多种蛋白质。结论使用简单的离液还原溶液和适度的超声处理来提取和增溶肾结石粉,再加上无标记的定量质谱法,已构成了迄今为止最全面的构成人类肾结石蛋白质组蛋白的蛋白质清单。

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