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用于增强完整蛋白质复合物的自上而下质谱测序的固定电荷三甲基吡啶鎓修饰。

Fixed-Charge Trimethyl Pyrilium Modification for Enabling Enhanced Top-Down Mass Spectrometry Sequencing of Intact Protein Complexes.

机构信息

Department of Chemistry, University of Michigan , 930 North University Avenue, Ann Arbor, Michigan 48109, United States.

Department of Chemistry, University of Antwerp , Groenenborgerlaan 171, 2020 Antwerp, Belgium.

出版信息

Anal Chem. 2018 Feb 20;90(4):2756-2764. doi: 10.1021/acs.analchem.7b04806. Epub 2018 Feb 2.

Abstract

Mass spectrometry of intact proteins and protein complexes has the potential to provide a transformative level of information on biological systems, ranging from sequence and post-translational modification analysis to the structures of whole protein assemblies. This ambitious goal requires the efficient fragmentation of both intact proteins and the macromolecular, multicomponent machines they collaborate to create through noncovalent interactions. Improving technologies in an effort to achieve such fragmentation remains perhaps the greatest challenge facing current efforts to comprehensively analyze cellular protein composition and is essential to realizing the full potential of proteomics. In this work, we describe the use of a trimethyl pyrylium (TMP) fixed-charge covalent labeling strategy aimed at enhancing fragmentation for challenging intact proteins and intact protein complexes. Combining analysis of TMP-modified and unmodified protein complexes results in a greater diversity of regions within the protein that give rise to fragments, and results in an up to 2.5-fold increase in sequence coverage when compared to unmodified protein alone, for protein complexes up to 148 kDa. TMP modification offers a simple and powerful platform to expand the capabilities of existing mass spectrometric instrumentation for the complete characterization of intact protein assemblies.

摘要

完整蛋白质和蛋白质复合物的质谱分析有可能为生物系统提供变革性的信息水平,从序列和翻译后修饰分析到整个蛋白质组装体的结构。这一雄心勃勃的目标需要有效地断裂完整蛋白质以及它们通过非共价相互作用合作创建的大分子、多组分机器。改进技术以努力实现这种断裂可能仍然是当前全面分析细胞蛋白质组成所面临的最大挑战,对于充分发挥蛋白质组学的潜力至关重要。在这项工作中,我们描述了使用三甲基吡喃鎓(TMP)固定电荷共价标记策略,旨在增强挑战性完整蛋白质和完整蛋白质复合物的片段化。对 TMP 修饰和未修饰的蛋白质复合物进行分析,导致蛋白质中产生片段的区域多样性增加,与单独使用未修饰的蛋白质相比,蛋白质复合物的序列覆盖率增加了 2.5 倍,对于分子量高达 148 kDa 的蛋白质复合物。TMP 修饰为扩展现有质谱仪器的功能提供了一个简单而强大的平台,用于完整蛋白质组装体的全面表征。

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