Canada's Michael Smith Genome Sciences Centre , British Columbia Cancer Agency , Vancouver , British Columbia V5Z 1L3 , Canada.
Department of Biochemistry and Microbiology , University of Victoria , Victoria , British Columbia V8P 3E6 , Canada.
J Proteome Res. 2018 Apr 6;17(4):1730-1740. doi: 10.1021/acs.jproteome.7b00913. Epub 2018 Mar 27.
The diversity in protein and peptide biochemistry necessitates robust protocols and reagents for efficiently handling and enriching these molecules prior to analysis with mass spectrometry (MS) or other techniques. Further exploration of the paramagnetic bead-based approach, single-pot solid-phase-enhanced sample preparation (SP3), is carried out toward updating and extending previously described conditions and experimental workflows. The SP3 approach was tested in a wide range of experimental scenarios, including (1) binding solvents (acetonitrile, ethanol, isopropanol, acetone), (2) binding pH (acidic vs neutral), (3) solvent/lysate ratios (50-200%, v/v), (4) mixing and rinsing conditions (on-rack vs off-rack rinsing), (5) Enrichment of nondenatured proteins, and (6) capture of individual proteins from noncomplex mixtures. These results highlight the robust handling of proteins in a broad set of scenarios while also enabling the development of a modified SP3 workflow that offers extended compatibility. The modified SP3 approach is used in quantitative in-depth proteome analyses to compare it with commercial paramagnetic bead-based HILIC methods (MagReSyn) and across multiple binding conditions (e.g., pH and solvent during binding). Together, these data reveal the extensive quantitative coverage of the proteome possible with SP3 independent of the binding approach utilized. The results further establish the utility of SP3 for the unbiased handling of peptides and proteins for proteomic applications.
蛋白质和肽生物化学的多样性需要强大的方案和试剂,以便在使用质谱(MS)或其他技术进行分析之前,有效地处理和富集这些分子。进一步探索基于顺磁珠的方法,即单步固相增强样品制备(SP3),旨在更新和扩展先前描述的条件和实验工作流程。SP3 方法在广泛的实验场景中进行了测试,包括 (1) 结合溶剂(乙腈、乙醇、异丙醇、丙酮),(2) 结合 pH 值(酸性与中性),(3) 溶剂/裂解液比例(50-200%,v/v),(4) 混合和冲洗条件(在架上与不在架上冲洗),(5) 非变性蛋白质的富集,以及 (6) 从非复杂混合物中捕获单个蛋白质。这些结果突出了在广泛的场景中处理蛋白质的稳健性,同时还能够开发出具有扩展兼容性的改良 SP3 工作流程。改良后的 SP3 方法用于定量深度蛋白质组分析中,与商业顺磁珠基于 HILIC 的方法(MagReSyn)进行比较,并在多个结合条件下(例如,结合过程中的 pH 值和溶剂)进行比较。这些数据共同揭示了 SP3 可独立于所使用的结合方法实现对蛋白质组的广泛定量覆盖。结果进一步证实了 SP3 用于蛋白质组学应用中肽和蛋白质的无偏处理的实用性。