Yu Clinton, Novitsky Eric, Wang Xiaorong, Echeverria Ignacia, Rychnovsky Scott, Huang Lan
bioRxiv. 2024 Aug 7:2024.08.06.606913. doi: 10.1101/2024.08.06.606913.
Cross-linking mass spectrometry (XL-MS) is a powerful technology for mapping protein-protein interactions (PPIs) at the systems-level. By covalently connecting pairs of proximal residues, cross-linking reagents provide distance restraints to infer protein conformations and interaction interfaces. While binary cross-links have been remarkably informative, multimeric cross-links can offer enhanced spatial resolution to facilitate the characterization of dynamic and heterogeneous protein complexes. However, the identification of multimeric cross-links remains extremely challenging due to fragmentation complexity and the vast expansion of database search space. Here, we present a novel trioxane-based MS-cleavable homotrifunctional cross-linker TSTO, which can target three proximal lysine residues simultaneously. Owing to its unique structure and MS-cleavability, TSTO enables fast and unambiguous identification of cross-linked peptides using LC-MS analysis. Importantly, we have demonstrated that the TSTO-based XL-MS platform is effective for mapping PPIs of protein complexes and cellular networks. The trimeric interactions captured by TSTO have uncovered new structural details that cannot be easily revealed by existing reagents, allowing in-depth description of PPIs to facilitate structural modeling. This development not only advances XL-MS technologies for global PPI profiling from living cells, but also offers a new direction for creating multifunctional MS-cleavable cross-linkers to further push structural systems biology forward in the future.
交联质谱法(XL-MS)是一种在系统水平上绘制蛋白质-蛋白质相互作用(PPI)图谱的强大技术。通过共价连接近端残基对,交联试剂提供距离限制以推断蛋白质构象和相互作用界面。虽然二元交联已经提供了大量信息,但多聚体交联可以提供更高的空间分辨率,以促进对动态和异质蛋白质复合物的表征。然而,由于碎片化的复杂性和数据库搜索空间的大幅扩展,多聚体交联的鉴定仍然极具挑战性。在这里,我们提出了一种基于三恶烷的可质谱裂解的同型三功能交联剂TSTO,它可以同时靶向三个近端赖氨酸残基。由于其独特的结构和可质谱裂解性,TSTO能够使用液相色谱-质谱分析快速、明确地鉴定交联肽段。重要的是,我们已经证明基于TSTO的XL-MS平台对于绘制蛋白质复合物和细胞网络的PPI图谱是有效的。TSTO捕获的三聚体相互作用揭示了现有试剂难以轻易揭示的新结构细节,从而能够深入描述PPI以促进结构建模。这一进展不仅推动了用于从活细胞进行全局PPI分析的XL-MS技术,也为创建多功能可质谱裂解的交联剂提供了新方向,以在未来进一步推动结构系统生物学的发展。