Korff Kathrin, Müller-Reif Johannes B, Fichtl Dorothea, Albrecht Vincent, Schebesta Alicia-Sophie, Itang Ericka C M, Winter Sebastian Virreira, Holdt Lesca M, Teupser Daniel, Mann Matthias, Geyer Philipp E
Department of Proteomics and Signal Transduction, Max Planck Institute of Biochemistry, Martinsried, Germany.
Institute of Laboratory Medicine, University Hospital, LMU Munich, Munich, Germany.
EMBO Mol Med. 2025 Sep 12. doi: 10.1038/s44321-025-00309-0.
Bead-based enrichment is a promising strategy to improve depth in plasma proteomics by overcoming the dynamic range barrier. However, its robustness against pre-analytical variation has not been sufficiently characterized. Here, we systematically evaluate five plasma proteomics workflows, including three bead-based methods, a neat workflow, and a precipitation protocol using spike-ins of low-abundance proteins and defined cellular contaminants. We find that bead-based approaches enhance detection of low-abundance proteins but can be highly susceptible to systematic bias from platelet and PBMC contamination. This can inflate results by thousands of proteins, potentially explaining some of the high literature-reported numbers. A perchloric acid-based workflow shows resistance to erythrocyte and platelet-derived contamination. We investigate how centrifugation conditions, anticoagulant choice, and buffer-bead combinations modulate contamination profiles and demonstrate that bias can be mitigated by optimized sample handling. Altogether, we identify more than 13,000 different protein groups, including cellular components from the circulating proteome. Our results provide a quantitative framework for assessing workflow performance under variable sample quality and offer guidance for both biomarker discovery and quality control in clinical proteomics studies.
基于磁珠的富集是一种很有前景的策略,可通过克服动态范围障碍来提高血浆蛋白质组学的深度。然而,其对分析前变异的稳健性尚未得到充分表征。在此,我们系统地评估了五种血浆蛋白质组学工作流程,包括三种基于磁珠的方法、一种纯工作流程以及一种使用低丰度蛋白质和特定细胞污染物加标的沉淀方案。我们发现基于磁珠的方法增强了对低丰度蛋白质的检测,但可能极易受到来自血小板和外周血单核细胞污染的系统偏差影响。这可能会使数千种蛋白质的结果膨胀,这可能解释了文献中报道的一些较高数字。基于高氯酸的工作流程显示出对红细胞和血小板衍生污染的抗性。我们研究了离心条件、抗凝剂选择以及缓冲液 - 磁珠组合如何调节污染情况,并证明通过优化样品处理可以减轻偏差。总之,我们鉴定出了超过13000种不同的蛋白质组,包括循环蛋白质组中的细胞成分。我们的结果提供了一个定量框架,用于评估可变样品质量下工作流程的性能,并为临床蛋白质组学研究中的生物标志物发现和质量控制提供指导。