Institute of Molecular Systems Biology, Department of Biology, ETH Zürich, 8093 Zürich, Switzerland.
Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, 3584 CH Utrecht, The Netherlands.
J Proteome Res. 2021 Jan 1;20(1):289-304. doi: 10.1021/acs.jproteome.0c00386. Epub 2020 Nov 3.
To understand and treat immunology-related diseases, a comprehensive, unbiased characterization of major histocompatibility complex (MHC) peptide ligands is of key importance. Preceding the analysis by mass spectrometry, MHC class I peptide ligands are typically isolated by MHC immunoaffinity chromatography (MHC-IAC) and less often by mild acid elution (MAE). MAE may provide a cheap alternative to MHC-IAC for suspension cells but has been hampered by the high number of contaminating, MHC-unrelated peptides. Here, we optimized MAE, yielding MHC peptide ligand purities of more than 80%. When compared with MHC-IAC, obtained peptides were similar in numbers, identities, and to a large extent intensities, while the percentage of cysteinylated peptides was 5 times higher in MAE. The latter benefitted the discovery of MHC-allotype-specific, distinct cysteinylation frequencies at individual positions of MHC peptide ligands. MAE revealed many MHC ligands with unmodified, N-terminal cysteine residues which get lost in MHC-IAC workflows. The results support the idea that MAE might be particularly valuable for the high-confidence analysis of post-translational modifications by avoiding the exposure of the investigated peptides to enzymes and reactive molecules in the cell lysate. Our improved and carefully documented MAE workflow represents a high-quality, cost-effective alternative to MHC-IAC for suspension cells.
为了理解和治疗与免疫学相关的疾病,全面、公正地描述主要组织相容性复合体(MHC)肽配体至关重要。在质谱分析之前,MHC I 类肽配体通常通过 MHC 免疫亲和层析(MHC-IAC)分离,较少通过弱酸洗脱(MAE)分离。MAE 可能为悬浮细胞提供 MHC-IAC 的廉价替代品,但由于大量污染的 MHC 无关肽的存在而受到阻碍。在这里,我们优化了 MAE,得到了纯度超过 80%的 MHC 肽配体。与 MHC-IAC 相比,获得的肽在数量、身份和在很大程度上的强度上是相似的,而 MAE 中半胱氨酸化肽的百分比高 5 倍。后者有助于发现 MHC 同种异型特异性、独特的半胱氨酸化频率在 MHC 肽配体的各个位置。MAE 揭示了许多具有未经修饰的、N 端半胱氨酸残基的 MHC 配体,这些配体在 MHC-IAC 工作流程中丢失。这些结果支持了这样一种观点,即 MAE 可能特别有价值,因为它可以避免研究肽暴露于细胞裂解物中的酶和反应性分子,从而避免对翻译后修饰进行高置信度分析。我们改进并详细记录的 MAE 工作流程代表了悬浮细胞 MHC-IAC 的高质量、具有成本效益的替代方法。