用于自下而上蛋白质组学分析的氯仿/甲醇蛋白质提取和溶液中胰蛋白酶消化方案。

IF 1 Q3 BIOLOGY
Tess Puopolo, Navindra P Seeram, Chang Liu
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引用次数: 0

摘要

自下而上的蛋白质组学利用样品制备技术酶解蛋白质,从而产生可识别和可量化的肽。蛋白质组学与基因组学和转录组学等其他全时组学方法相结合,可阐明与疾病相关的生物标志物以及对药物或生物制剂治疗的反应。用于质谱分析的蛋白质组样本制备方法在多个因素上存在差异,包括裂解缓冲液洗涤剂的成分、均质化技术、蛋白质提取和沉淀方法、烷基化策略以及消化酶的选择。自下而上蛋白质组学的一般工作流程包括样品制备、质谱数据采集(LC-MS/MS 分析)以及随后的下游数据分析,包括蛋白质定量和差异表达分析。由于可重复性低和固有程序复杂等问题,样品制备一直是一项挑战。在此,我们开发了一种经过验证的氯仿/甲醇样品制备方案,可从啮齿动物组织和人类细胞系样品中获得可重复的多肽混合物,用于自下而上的蛋白质组学分析。我们建立的方案可促进自下而上蛋白质组学工作流程的标准化,从而提高获取可靠的生物和/或临床相关蛋白质组学数据的能力。主要特点 - 用于自底向上蛋白质组学的组织/细胞团样品制备。- 从鼠组织样本中提取氯仿/甲醇蛋白质。- 溶液内胰蛋白酶消化蛋白质组学工作流程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chloroform/Methanol Protein Extraction and In-solution Trypsin Digestion Protocol for Bottom-up Proteomics Analysis.

Bottom-up proteomics utilizes sample preparation techniques to enzymatically digest proteins, thereby generating identifiable and quantifiable peptides. Proteomics integrates with other omics methodologies, such as genomics and transcriptomics, to elucidate biomarkers associated with diseases and responses to drug or biologics treatment. The methodologies employed for preparing proteomic samples for mass spectrometry analysis exhibit variability across several factors, including the composition of lysis buffer detergents, homogenization techniques, protein extraction and precipitation methodologies, alkylation strategies, and the selection of digestion enzymes. The general workflow for bottom-up proteomics consists of sample preparation, mass spectrometric data acquisition (LC-MS/MS analysis), and subsequent downstream data analysis including protein quantification and differential expression analysis. Sample preparation poses a persistent challenge due to issues such as low reproducibility and inherent procedure complexities. Herein, we have developed a validated chloroform/methanol sample preparation protocol to obtain reproducible peptide mixtures from both rodent tissue and human cell line samples for bottom-up proteomics analysis. The protocol we established may facilitate the standardization of bottom-up proteomics workflows, thereby enhancing the acquisition of reliable biologically and/or clinically relevant proteomic data. Key features • Tissue/cell pellet sample preparation for bottom-up proteomics. • Chloroform/methanol protein extraction from murine tissue samples. • In-solution trypsin digestion proteomics workflow.

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