首页> 外文期刊>Journal of proteome research >High recovery FASP applied to the proteomic analysis of microdissected formalin fixed paraffin embedded cancer tissues retrieves known colon cancer markers
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High recovery FASP applied to the proteomic analysis of microdissected formalin fixed paraffin embedded cancer tissues retrieves known colon cancer markers

机译:高回收率FASP用于显微切割的福尔马林固定石蜡包埋的癌组织的蛋白质组学分析,检索已知的结肠癌标志物

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Proteomic analysis of samples isolated by laser capture microdissection from clinical specimens requires sample preparation and fractionation methods suitable for small amounts of protein. Here we describe a streamlined filter-aided sample preparation (FASP) workflow that allows efficient analysis of lysates from low numbers of cells. Addition of carrier substances such as polyethylene glycol or dextran to the processed samples improves the peptide yields in the low to submicrogram range. In a single LC-MS/MS run, analyses of 500, 1000, and 3000 cells allowed identification of 905, 1536, and 2055 proteins, respectively. Incorporation of an additional SAX fractionation step at somewhat higher amounts enabled the analysis of formalin fixed and paraffin embedded human tissues prepared by LCM to a depth of 3600-4400 proteins per single experiment. We applied this workflow to compare archival neoplastic and matched normal colonic mucosa cancer specimens for three patients. Label-free quantification of more than 6000 proteins verified this technology through the differential expression of 30 known colon cancer markers. These included Carcino-Embryonic Antigen (CEA), the most widely used colon cancer marker, complement decay accelerating factor (DAF, CD55) and Metastasis-associated in colon cancer protein 1 (MACC1). Concordant with literature knowledge, mucin 1 was overexpressed and mucin 2 underexpressed in all three patients. These results show that FASP is suitable for the low level analysis of microdissected tissue and that it has the potential for exploration of clinical samples for biomarker and drug target discovery.
机译:通过激光捕获显微切割从临床标本中分离出的样品进行蛋白质组学分析,需要适用于少量蛋白质的样品制备和分级分离方法。在这里,我们描述了一种简化的过滤器辅助样品制备(FASP)工作流程,该流程可对少量细胞中的裂解物进行有效分析。将载体物质(例如聚乙二醇或右旋糖酐)添加到处理后的样品中,可在低至亚微克范围内提高肽产量。在一次LC-MS / MS运行中,对500、1000和3000个细胞的分析可以分别鉴定905、1536和2055蛋白。每个单独的实验以更高的量加入额外的SAX分级分离步骤,就可以分析由LCM制备的福尔马林固定的和石蜡包埋的人体组织,其深度为3600-4400蛋白。我们应用此工作流程比较了三名患者的存档肿瘤性肿瘤和匹配的正常结肠粘膜癌标本。通过30种已知结肠癌标记物的差异表达,对6000多种蛋白质的无标记定量验证了这项技术。其中包括最广泛使用的结肠癌标志物Carcino-Embryonic Antigen(CEA),补体衰变加速因子(DAF,CD55)和与结肠癌蛋白1(MACC1)相关的转移。根据文献知识,在所有三位患者中,粘蛋白1均过表达,而粘蛋白2则过表达。这些结果表明,FASP适用于显微解剖组织的低水平分析,并且具有探索临床样品用于生物标志物和药物靶标发现的潜力。

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