Div. Clinical Chemistry, Dept. of Translational Medicine, Lund University, Skåne University Hospital Malmö, Malmö 20502, Sweden.
Div. Clinical Protein Science & Imaging, Dept. of Clinical Sciences (Lund) and Dept. of Biomedical Engineering, Lund University, Lund 22100, Sweden.
J Proteome Res. 2021 Jan 1;20(1):1027-1039. doi: 10.1021/acs.jproteome.0c00850. Epub 2020 Dec 10.
Well-characterized archival formalin-fixed paraffin-embedded (FFPE) tissues are of much value for prospective biomarker discovery studies, and protocols that offer high throughput and good reproducibility are essential in proteomics. Therefore, we implemented efficient paraffin removal and protein extraction from FFPE tissues followed by an optimized two-enzyme digestion using suspension trapping (S-Trap). The protocol was then combined with TMTpro 16plex labeling and applied to lung adenocarcinoma patient samples. In total, 9585 proteins were identified, and proteins related to the clinical outcome were detected. Because acetylation is known to play a major role in cancer development, a fast on-trap acetylation protocol was developed for studying endogenous lysine acetylation, which allows identification and localization of the lysine acetylation together with quantitative comparison between samples. We demonstrated that FFPE tissues are equivalent to frozen tissues to study the degree of acetylation between patients. In summary, we present a reproducible sample preparation workflow optimized for FFPE tissues that resolves known proteomic-related challenges. We demonstrate compatibility of the S-Trap with isobaric labeling and for the first time, we prove that it is feasible to study endogenous lysine acetylation stoichiometry in FFPE tissues, contributing to better utility of the existing global tissue archives. The MS proteomic data have been deposited to the ProteomeXchange Consortium via the PRIDE partner repository with the data set identifiers PXD020157, PXD021986, and PXD021964.
经充分特征描述的福尔马林固定石蜡包埋(FFPE)组织对于前瞻性生物标志物发现研究非常有价值,而在蛋白质组学中,提供高通量和良好重现性的方案至关重要。因此,我们实施了从 FFPE 组织中高效去除石蜡和提取蛋白质的方案,随后使用悬浮捕获(S-Trap)进行了优化的双酶消化。该方案随后与 TMTpro16plex 标记相结合,并应用于肺腺癌患者样本。总共鉴定了 9585 种蛋白质,并检测到与临床结果相关的蛋白质。由于乙酰化已知在癌症发展中起主要作用,因此开发了一种快速的阱内乙酰化方案,用于研究内源性赖氨酸乙酰化,该方案允许与定量比较一起鉴定和定位赖氨酸乙酰化。我们证明 FFPE 组织与冷冻组织一样可用于研究患者之间的乙酰化程度。总之,我们提出了一种针对 FFPE 组织优化的可重复的样本制备工作流程,解决了已知的蛋白质组学相关挑战。我们证明了 S-Trap 与等压标记的兼容性,并且首次证明在 FFPE 组织中研究内源性赖氨酸乙酰化化学计量是可行的,这有助于更好地利用现有的全球组织档案。MS 蛋白质组学数据已通过 PRIDE 合作伙伴存储库存入 ProteomeXchange 联盟,数据集标识符为 PXD020157、PXD021986 和 PXD021964。