University of Maryland , College Park , Maryland 20742 , United States.
Anal Chem. 2018 Mar 20;90(6):4032-4038. doi: 10.1021/acs.analchem.7b05234. Epub 2018 Mar 7.
Post-translational modifications by the covalent attachment of Rub1 (NEDD8), ubiquitin, SUMO, and other small signaling proteins have profound impacts on the functions and fates of cellular proteins. Investigations of the relationship of these bioactive structures and their functions are limited by analytical methods that are scarce and tedious. A novel strategy is reported here for the analysis of branched proteins by top-down mass spectrometry and illustrated by application to four recombinant proteins and one synthetic peptide modified by covalent bonds with ubiquitin or Rub1. The approach allows an analyte to be recognized as a branched protein; the participating proteins to be identified; the site of conjugation to be defined; and other chemical, native, and recombinant modifications to be characterized. In addition to the high resolution and high accuracy provided by the mass spectrometer, success is based on sample fragmentation by electron-transfer dissociation assisted by collisional activation and on software designed for graphic interpretation and adapted for branched proteins. The strategy allows for structures of unknown, two-component branched proteins to be elucidated directly the first time and can potentially be extended to more complex systems.
通过Rub1(NEDD8)、泛素、SUMO及其他小信号蛋白的共价连接进行的翻译后修饰,对细胞蛋白的功能和命运有着深远影响。对这些生物活性结构及其功能之间关系的研究,受到分析方法稀缺且繁琐的限制。本文报道了一种通过自上而下质谱分析分支蛋白的新策略,并通过应用于四种重组蛋白和一种与泛素或Rub1共价结合修饰的合成肽进行了说明。该方法能够识别分析物为分支蛋白;鉴定参与的蛋白;确定共轭位点;并表征其他化学、天然和重组修饰。除了质谱仪提供的高分辨率和高精度外,成功还基于碰撞激活辅助的电子转移解离对样品的碎片化以及为图形解释设计并适用于分支蛋白的软件。该策略能够首次直接阐明未知的双组分分支蛋白的结构,并有可能扩展到更复杂的系统。