School of Basic Medical Sciences, Anhui Medical University, Hefei 230032, China.
State Key Laboratory of Proteomics, Beijing Proteome Research Center, National Center for Protein Sciences Beijing, Beijing Institute of Lifeomics, Beijing 102206, China.
J Proteome Res. 2022 May 6;21(5):1349-1358. doi: 10.1021/acs.jproteome.2c00174. Epub 2022 Apr 25.
Click chemistry─specifically the copper-catalyzed azide-alkyne cycloaddition─has enabled the development of a wide range of chemical probes to analyze subsets of the functional proteome. The "clickable" proteome can be selectively enriched by using diverse cleavable biotin tags, but the direct identification of probe/tag-modified peptides (or peptide-centric analysis) remains challenging. Here, we evaluated the performance of five commercially available cleavable biotin tags in three most common chemoproteomic workflows, resulting in a comparative analysis of 15 methods. An acid-cleavable biotin tag with a dialkoxydiphenylsilane moiety, in combination with the protein "click", peptide "capture" workflow, outperforms all other methods in terms of enrichment efficiency, identification yield, and reproducibility, although its performance may be slightly compromised by the formation of an unwanted formate product revealed by blind search. Despite being inferior, photocleavable, and reduction-cleavable, biotin tags can also find their applicable sceneries, especially when dealing with acid-sensitive probes or probe-derived modifications. Furthermore, the systematic comparison of LC-MS/MS characteristics of tag-modified peptides provides valuable information for the future development of cleavable biotin reagents. Taken together, our data provides a much-needed practical guidance for researchers interested in developing and/or applying an ideal cleavable biotin tag to peptide-centric chemoproteomics.
点击化学——特别是铜催化的叠氮化物-炔烃环加成反应——已经使得广泛的化学探针得以开发,用于分析功能蛋白质组的子集。通过使用各种可裂解的生物素标签,可以选择性地富集“可点击的”蛋白质组,但探针/标签修饰肽的直接鉴定(或肽中心分析)仍然具有挑战性。在这里,我们评估了五种市售可裂解生物素标签在三种最常见的化学蛋白质组学工作流程中的性能,从而对 15 种方法进行了比较分析。带有二烷氧基二苯基硅烷部分的酸可裂解生物素标签,与蛋白质“点击”、肽“捕获”工作流程相结合,在富集效率、鉴定产量和重现性方面优于所有其他方法,尽管由于盲法搜索揭示了形成不需要的甲酸盐产物,其性能可能会略有降低。尽管光裂解和还原裂解生物素标签性能较差,但它们也可以找到适用的场景,特别是在处理酸敏感探针或探针衍生修饰时。此外,对标签修饰肽的 LC-MS/MS 特征的系统比较为可裂解生物素试剂的未来发展提供了有价值的信息。总之,我们的数据为有兴趣开发和/或应用理想的可裂解生物素标签进行肽中心化学蛋白质组学的研究人员提供了急需的实用指导。