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泛素延伸状态的分辨率与结构转变

Resolution and structural transitions of elongated states of ubiquitin.

作者信息

Koeniger Stormy L, Clemmer David E

机构信息

Department of Chemistry, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

J Am Soc Mass Spectrom. 2007 Feb;18(2):322-31. doi: 10.1016/j.jasms.2006.09.025. Epub 2006 Nov 2.

DOI:10.1016/j.jasms.2006.09.025
PMID:17084091
Abstract

Electrospray ionization, combined with two-dimensional ion mobility spectrometry and mass spectrometry, is used to produce, select, and activate distributions of elongated ions, [M + 11H]11+ to [M + 13H]13+, of ubiquitin. The analysis makes it possible to examine state-to-state transitions for structural types, and transition diagrams associated with the efficiencies of structural changes are presented. The +11 and +12 charge states can form four resolvable states while only one state is formed for [M + 13H]13+. Some conformations, which appear to belong to the same family based on mobility analysis of different charge states, undergo similar transitions, others do not. Activation of ions that exist in low-abundance conformations, having mobilities that fall in between sharp peaks associated with higher abundances species, shows that the low-abundance forms undergo efficient (approximately 90 to 100%) conversion into states associated with well-defined peaks. This efficiency is significantly higher than the approximately 10 to 60% efficiency of transitions of structures associated with well-defined peaks. The formation of sharp features from a range of low-intensity species with different cross sections indicates that large regions of conformation space must be unfavorable or inaccessible in the gas phase. These results are compared with several previous IMS measurements of this system as well as information about gas-phase structure provided by other techniques.

摘要

电喷雾电离与二维离子淌度光谱法和质谱联用,用于产生、选择和激活泛素的拉长离子分布,即[M + 11H]11+至[M + 13H]13+。该分析使得检查结构类型的状态间转变成为可能,并给出了与结构变化效率相关的转变图。+11和+12电荷态可形成四个可分辨的状态,而[M + 13H]13+仅形成一个状态。基于不同电荷态的淌度分析,一些似乎属于同一族的构象会经历相似的转变,而其他构象则不然。对存在于低丰度构象中的离子进行激活,这些离子的淌度介于与较高丰度物种相关的尖锐峰之间,结果表明低丰度形式会高效(约90%至100%)转化为与明确峰相关的状态。这种效率显著高于与明确峰相关的结构转变的约10%至60%的效率。由一系列具有不同截面的低强度物种形成尖锐特征,表明构象空间的大片区域在气相中必定是不利的或无法到达的。将这些结果与该系统先前的几次离子淌度光谱测量以及其他技术提供的关于气相结构的信息进行了比较。

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