Anal Chem. 2020 Apr 21;92(8):6026-6033. doi: 10.1021/acs.analchem.0c00298. Epub 2020 Mar 31.
Cross-linking mass spectrometry (XL-MS) has become a powerful structural tool for defining protein-protein interactions (PPIs) and elucidating architectures of large protein assemblies. To advance XL-MS studies, we have previously developed a series of sulfoxide-containing MS-cleavable cross-linkers to facilitate the detection and identification of cross-linked peptides using multistage mass spectrometry (MS). While current sulfoxide-based cross-linkers are effective for in vivo and in vitro XL-MS studies at the systems-level, new reagents are still needed to help expand PPI coverage. To this end, we have designed and synthesized six variable-length derivatives of disuccinimidyl sulfoxide (DSSO) to better understand the effects of spacer arm modulation on MS-cleavability, fragmentation characteristics, and MS identification of cross-linked peptides. In addition, the impact on cross-linking reactivity was evaluated. Moreover, alternative MS-based workflows were explored to determine their feasibility for analyzing new sulfoxide-containing cross-linked products. Based on the results of synthetic peptides and a model protein, we have further demonstrated the robustness and predictability of sulfoxide chemistry in designing MS-cleavable cross-linkers. Importantly, we have identified a unique asymmetric design that exhibits preferential fragmentation of cross-links over peptide backbones, a desired feature for MS analysis. This work has established a solid foundation for further development of sulfoxide-containing MS-cleavable cross-linkers with new functionalities.
交联质谱(XL-MS)已成为定义蛋白质-蛋白质相互作用(PPIs)和阐明大型蛋白质组装结构的有力工具。为了推进 XL-MS 研究,我们之前开发了一系列含亚砜的 MS 可切割交联剂,以方便使用多级质谱(MS)检测和鉴定交联肽。虽然当前基于亚砜的交联剂在系统水平的体内和体外 XL-MS 研究中非常有效,但仍需要新的试剂来帮助扩大 PPI 覆盖范围。为此,我们设计并合成了六个不同长度的二琥珀酰亚胺基磺酰亚胺(DSSO)衍生物,以更好地了解间隔臂调制对 MS 可切割性、碎片化特征和交联肽 MS 鉴定的影响。此外,还评估了对交联反应性的影响。此外,还探索了替代的基于 MS 的工作流程,以确定它们分析新含亚砜交联产物的可行性。基于合成肽和模型蛋白的结果,我们进一步证明了亚砜化学在设计 MS 可切割交联剂时的稳健性和可预测性。重要的是,我们已经确定了一种独特的不对称设计,它表现出对交联的优先碎片化,而不是肽骨架,这是 MS 分析的理想特征。这项工作为进一步开发具有新功能的含亚砜的 MS 可切割交联剂奠定了坚实的基础。