化学
串联质谱法
亲和素
四聚体
质谱法
离子迁移光谱法
碰撞诱导离解
离解(化学)
串联
色谱法
单体
分析化学(期刊)
碎片(计算)
生物素化
生物化学
物理化学
有机化学
复合材料
操作系统
酶
计算机科学
材料科学
聚合物
作者
Fanny C. Liu,Tyler C. Cropley,Mark E. Ridgeway,Melvin A. Park,Christian Bleiholder
标识
DOI:10.1021/acs.analchem.9b05481
摘要
Glycoproteins play a central role in many biological processes including disease mechanisms. Nevertheless, because glycoproteins are heterogeneous entities, it remains unclear how glycosylation modulates the protein structure and function. Here, we assess the ability of tandem-trapped ion mobility spectrometry-mass spectrometry (tandem-TIMS/MS) to characterize the structure and sequence of the homotetrameric glycoprotein avidin. We show that (1) tandem-TIMS/MS retains native-like avidin tetramers with deeply buried solvent particles; (2) applying high activation voltages in the interface of tandem-TIMS results in collision-induced dissociation (CID) of avidin tetramers into compact monomers, dimers, and trimers with cross sections consistent with X-ray structures and reports from surface-induced dissociation (SID); (3) avidin oligomers are best described as heterogeneous ensembles with (essentially) random combinations of monomer glycoforms; (4) native top-down sequence analysis of the avidin tetramer is possible by CID in tandem-TIMS. Overall, our results demonstrate that tandem-TIMS/MS has the potential to correlate individual proteoforms to variations in protein structure.
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