International Centre for Cancer Vaccine Science, University of Gdansk, 80-309 Gdansk, Poland.
Van't Hoff Institute for Molecular Sciences, University of Amsterdam, 1012 WP Amsterdam, The Netherlands.
Molecules. 2022 Feb 8;27(3):1137. doi: 10.3390/molecules27031137.
The application of proteomics to fresh frozen (FF) and formalin-fixed paraffin-embedded (FFPE) human tissues is an important development spurred on by requests from stakeholder groups in clinical fields. One objective is to complement current diagnostic methods with new specific molecular information. An important goal is to achieve adequate and consistent protein recovery across and within large-scale studies. Here, we describe development of several protocols incorporating mass spectrometry compatible detergents, including Rapigest, PPS, and ProteaseMax. Methods were applied on 4 and 15 μm thick FF tissues, and 4 μm thick FFPE tissues. We evaluated sensitivity and repeatability of the methods and found that the protocol containing Rapigest enabled detection of 630 proteins from FF tissue of 1 mm and 15 μm thick, whereas 498 and 297 proteins were detected with the protocols containing ProteaseMax and PPS, respectively. Surprisingly, PPS-containing buffer showed good extraction of the proteins from 4 μm thick FFPE tissue with the average of 270 protein identifications (1 mm), similar to the results on 4 μm thick FF. Moreover, we found that temperature increases during incubation with urea on 4 μm thick FF tissue revealed a decrease in the number of identified proteins and increase in the number of the carbamylated peptides.
蛋白质组学在新鲜冷冻(FF)和福尔马林固定石蜡包埋(FFPE)人体组织中的应用是一个重要的发展,这是受到临床领域利益相关者群体的要求推动的。其目的之一是用新的特定分子信息来补充当前的诊断方法。一个重要的目标是在大规模研究中实现跨组织和组织内的充分和一致的蛋白质回收。在这里,我们描述了几种方法的开发,这些方法包含了质谱兼容的去污剂,包括 Rapigest、PPS 和 ProteaseMax。这些方法应用于 4μm 和 15μm 厚的 FF 组织和 4μm 厚的 FFPE 组织。我们评估了这些方法的灵敏度和可重复性,发现含有 Rapigest 的方法能够从 1mm 和 15μm 厚的 FF 组织中检测到 630 种蛋白质,而含有 ProteaseMax 和 PPS 的方法分别检测到 498 种和 297 种蛋白质。令人惊讶的是,含有 PPS 的缓冲液在 4μm 厚的 FFPE 组织中表现出良好的蛋白质提取效果,平均有 270 种蛋白质被鉴定(1mm),与 4μm 厚的 FF 组织的结果相似。此外,我们发现,在 4μm 厚的 FF 组织中,脲在孵育过程中的温度升高会导致鉴定到的蛋白质数量减少,而碳化肽的数量增加。