Chowdhury Saiful M, Du Xiuxia, Tolić Nikola, Wu Si, Moore Ronald J, Mayer M Uljana, Smith Richard D, Adkins Joshua N
Biological Sciences Division and Environmental and Molecular Science Laboratory, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.
Anal Chem. 2009 Jul 1;81(13):5524-32. doi: 10.1021/ac900853k.
Chemical cross-linking combined with mass spectrometry can be a powerful approach for the identification of protein-protein interactions and for providing constraints on protein structures. However, enrichment of cross-linked peptides is crucial to reduce sample complexity before mass spectrometric analysis. In addition compact cross-linkers are often preferred to provide short spacer lengths, surface accessibility to the protein complexes, and must have reasonable solubility under conditions where the native complex structure is stable. In this study, we present a novel compact cross-linker that contains two distinct features: (1) an alkyne tag and (2) a small molecule detection tag (NO(2)) to maintain reasonable solubility in water. The alkyne tag enables enrichment of the cross-linked peptides after proteolytic cleavage and coupling of an affinity tag using alkyne-azido click chemistry. Neutral loss of the small NO(2) moiety provides a secondary means of detecting cross-linked peptides in MS/MS analyses, providing additional confidence in peptide identifications. We show the labeling efficiency of this cross-linker, which we termed CLIP (click-enabled linker for interacting proteins) using ubiquitin. The enrichment capability of CLIP is demonstrated for cross-linked ubiquitin in highly complex E. coli cell lysates. Sequential collision-induced dissociation tandem mass spectrometry (CID-MS/MS) and electron transfer dissociation (ETD)-MS/MS of intercross-linked peptides (two peptides connected with a cross-linker) are also demonstrated for improved automated identification of cross-linked peptides.
化学交联结合质谱分析是鉴定蛋白质-蛋白质相互作用以及为蛋白质结构提供限制条件的有力方法。然而,交联肽的富集对于在质谱分析前降低样品复杂性至关重要。此外,紧凑的交联剂通常更受青睐,因为它们能提供较短的间隔长度、蛋白质复合物的表面可及性,并且在天然复合物结构稳定的条件下必须具有合理的溶解度。在本研究中,我们提出了一种新型紧凑交联剂,它具有两个独特特征:(1)一个炔烃标签和(2)一个小分子检测标签(NO(2))以保持在水中的合理溶解度。炔烃标签能够在蛋白水解切割后富集交联肽,并利用炔烃-叠氮化物点击化学偶联亲和标签。小分子NO(2)部分的中性丢失为在MS/MS分析中检测交联肽提供了第二种方法,为肽段鉴定提供了额外的可信度。我们展示了这种交联剂的标记效率,我们使用泛素将其命名为CLIP(用于相互作用蛋白质的点击启用型交联剂)。CLIP对高度复杂的大肠杆菌细胞裂解物中的交联泛素的富集能力得到了证明。还展示了交联肽段(通过交联剂连接的两个肽段)的顺序碰撞诱导解离串联质谱(CID-MS/MS)和电子转移解离(ETD)-MS/MS,以改进交联肽段的自动鉴定。