Kandur Wynne V, Kao Athit, Vellucci Danielle, Huang Lan, Rychnovsky Scott D
Department of Chemistry, University of California, Irvine, CA 92697, USA.
Org Biomol Chem. 2015 Oct 14;13(38):9793-807. doi: 10.1039/c5ob01410g.
The cross-linking Mass Spectrometry (XL-MS) technique has enormous potential for studying the interactions between proteins, and it can provide detailed structural information about the interaction interfaces in large protein complexes. Such information has been difficult to obtain by conventional structural methods. One of the primary impediments to the wider use of the XL-MS technique is the extreme challenge in sequencing cross-linked peptides because of their complex fragmentation patterns in MS. A recent innovation is the development of MS-cleavable cross-linkers, which allows direct sequencing of component peptides for facile identification. Sulfoxides are an intriguing class of thermally-cleavable compounds that have been shown to fragment selectively during low-energy collisional induced dissociation (CID) analysis. Current CID-cleavable cross-linkers create fragmentation patterns in MS(2) of multiple peaks for each cross-linked peptide. Reducing the complexity of the fragmentation pattern in MS(2) facilitates subsequent MS(3) sequencing of the cross-linked peptides. The first authentic identical mass linker (IML) has now been designed, prepared, and evaluated. Multistage tandem mass spectrometry (MS(n)) analysis has demonstrated that the IML cross-linked peptides indeed yield one peak per peptide constituent in MS(2) as predicted, thus allowing effective and sensitive MS(3) analysis for unambiguous identification. Selective fragmentation for IML cross-linked peptides from the 19S proteasome complex was observed, providing a proof-of-concept demonstration for XL-MS studies on protein complexes.
交联质谱(XL-MS)技术在研究蛋白质之间的相互作用方面具有巨大潜力,它可以提供有关大型蛋白质复合物中相互作用界面的详细结构信息。而这些信息通过传统结构方法很难获得。XL-MS技术广泛应用的主要障碍之一是交联肽测序面临极大挑战,因为其在质谱中具有复杂的碎裂模式。最近的一项创新是开发了可质谱裂解的交联剂,这使得能够直接对组成肽进行测序以便于鉴定。亚砜是一类有趣的可热裂解化合物,已证明在低能碰撞诱导解离(CID)分析过程中会选择性碎裂。目前的CID可裂解交联剂在每个交联肽的MS(2)中产生多个峰的碎裂模式。降低MS(2)中碎裂模式的复杂性有助于后续对交联肽进行MS(3)测序。现在已经设计、制备并评估了首个真正的同质量连接子(IML)。多级串联质谱(MS(n))分析表明,IML交联肽在MS(2)中确实如预期那样每个肽成分产生一个峰,从而允许进行有效且灵敏的MS(3)分析以明确鉴定。观察到来自19S蛋白酶体复合物的IML交联肽的选择性碎裂,为蛋白质复合物的XL-MS研究提供了概念验证。