Institute of Pharmacy, Martin Luther University Halle-Wittenberg, Wolfgang-Langenbeck-Str. 4, 06120, Halle (Saale), Germany.
Department of Chemistry, University of Cologne, Greinstr. 4, 50939, Cologne, Germany.
J Am Soc Mass Spectrom. 2017 Oct;28(10):2022-2038. doi: 10.1007/s13361-017-1712-1. Epub 2017 Jun 26.
The chemical cross-linking/mass spectrometry (MS) approach is gaining increasing importance as an alternative method for studying protein conformation and for deciphering protein interaction networks. This study is part of our ongoing efforts to develop innovative cross-linking principles for a facile and efficient assignment of cross-linked products. We evaluate two homobifunctional, amine-reactive, and MS-cleavable cross-linkers regarding their potential for automated analysis of cross-linked products. We introduce the bromine phenylurea (BrPU) linker that possesses a unique structure yielding a distinctive fragmentation pattern on collisional activation. Moreover, BrPU delivers the characteristic bromine isotope pattern and mass defect for all cross-linker-decorated fragments. We compare the fragmentation behavior of the BrPU linker with that of our previously described MS-cleavable TEMPO-Bz linker (which consists of a 2,2,6,6-tetramethylpiperidine-1-oxy moiety connected to a benzyl group) that was developed to perform free-radical-initiated peptide sequencing. Comparative collisional activation experiments (collision-induced dissociation and higher-energy collision-induced dissociation) with both cross-linkers were conducted in negative electrospray ionization mode with an Orbitrap Fusion mass spectrometer using five model peptides. As hypothesized in a previous study, the presence of a cross-linked N-terminal aspartic acid residue seems to be the prerequisite for the loss of an intact peptide from the cross-linked products. As the BrPU linker combines a characteristic mass shift with an isotope signature, it presents a more favorable combination for automated assignment of cross-linked products compared with the TEMPO-Bz linker. ᅟ.
化学交联/质谱 (MS) 方法作为研究蛋白质构象和破译蛋白质相互作用网络的替代方法,其重要性日益增加。本研究是我们正在进行的开发创新交联原理的一部分,旨在实现交联产物的简便高效分配。我们评估了两种同双功能、胺反应性和 MS 可裂解的交联剂,以评估它们在自动化分析交联产物方面的潜力。我们引入了溴代苯脲 (BrPU) 接头,该接头具有独特的结构,在碰撞激活时会产生独特的碎裂模式。此外,BrPU 为所有交联剂修饰的片段提供特征性的溴同位素图案和质量缺陷。我们将 BrPU 接头的碎裂行为与我们之前描述的 MS 可裂解 TEMPO-Bz 接头(由连接到苄基的 2,2,6,6-四甲基哌啶-1-氧基部分组成)进行比较,该接头开发用于执行自由基引发的肽测序。使用 Orbitrap Fusion 质谱仪在负电喷雾电离模式下对两种交联剂进行比较碰撞激活实验(碰撞诱导解离和更高能量碰撞诱导解离),使用五个模型肽进行实验。正如之前的一项研究中假设的那样,交联的 N 端天冬氨酸残基的存在似乎是交联产物中完整肽丢失的前提。由于 BrPU 接头结合了特征质量位移和同位素特征,与 TEMPO-Bz 接头相比,它为交联产物的自动分配提供了更有利的组合。