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Protein Extraction of Formalin-fixed, Paraffin-embedded Tissue Enables Robust Proteomic Profiles by Mass Spectrometry

机译:福尔马林固定,石蜡包埋的组织的蛋白质提取可通过质谱实现鲁棒的蛋白质组学特征

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摘要

Global mass spectrometry (MS) profiling and spectral count quantitation are used to identify unique or differentially expressed proteins and can help identify potential biomarkers. MS has rarely been conducted in retrospective studies, because historically, available samples for protein analyses were limited to formalin-fixed, paraffin-embedded (FFPE) archived tissue specimens. Reliable methods for obtaining proteomic profiles from FFPE samples are needed. Proteomic analysis of these samples has been confounded by formalin-induced protein cross-linking. The performance of extracted proteins in a liquid chromatography tandem MS format from FFPE samples and extracts from whole and laser capture microdissected (LCM) FFPE and frozen/optimal cutting temperature (OCT)–embedded matched control rat liver samples were compared. Extracts from FFPE and frozen/OCT–embedded livers from atorvastatin-treated rats were further compared to assess the performance of FFPE samples in identifying atorvastatin-regulated proteins. Comparable molecular mass representation was found in extracts from FFPE and OCT-frozen tissue sections, whereas protein yields were slightly less for the FFPE sample. The numbers of shared proteins identified indicated that robust proteomic representation from FFPE tissue and LCM did not negatively affect the number of identified proteins from either OCT-frozen or FFPE samples. Subcellular representation in FFPE samples was similar to OCT-frozen, with predominantly cytoplasmic proteins identified. Biologically relevant protein changes were detected in atorvastatin-treated FFPE liver samples, and selected atorvastatin-related proteins identified by MS were confirmed by Western blot analysis. These findings demonstrate that formalin fixation, paraffin processing, and LCM do not negatively impact protein quality and quantity as determined by MS and that FFPE samples are amenable to global proteomic analysis. (J Histochem Cytochem 57:849–860, 2009)
机译:全球质谱(MS)分析和光谱计数定量可用于鉴定独特或差异表达的蛋白质,并可帮助鉴定潜在的生物标志物。回顾性研究很少进行MS,因为从历史上看,用于蛋白质分析的可用样品仅限于福尔马林固定,石蜡包埋(FFPE)存档的组织标本。需要从FFPE样品中获得蛋白质组学概况的可靠方法。这些样品的蛋白质组学分析已被福尔马林诱导的蛋白质交联所混淆。比较了以液相色谱串联MS格式从FFPE样品中提取的蛋白质的性能,以及从整体和激光捕获显微切割(LCM)FFPE和冷冻/最佳切割温度(OCT)嵌入的匹配对照大鼠肝脏样品中提取的蛋白质的性能。进一步比较了FFPE提取物和阿托伐他汀治疗的大鼠的冰冻/经OCT包埋的肝脏,以评估FFPE样品在鉴定阿托伐他汀调节蛋白中的性能。在FFPE和OCT冷冻组织切片的提取物中发现了可比的分子量表示,而FFPE样品的蛋白质产量略低。鉴定出的共有蛋白质数量表明,FFPE组织和LCM的蛋白质组学表现力强,不会对从OCT冷冻或FFPE样品鉴定出的蛋白质数量产生负面影响。 FFPE样品中的亚细胞代表与冻结的OCT相似,主要鉴定出细胞质蛋白。在阿托伐他汀处理的FFPE肝样品中检测到生物学相关的蛋白质变化,并通过Western印迹分析确认了通过MS鉴定的所选阿托伐他汀相关蛋白质。这些发现表明,福尔马林固定,石蜡加工和LCM不会对MS所确定的蛋白质质量和数量产生负面影响,并且FFPE样品适合进行全局蛋白质组学分析。 (J Histochem Cytochem 57:849–860,2009)

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