Proteoform Profile Mapping of the Human Serum Complement Component C9 Revealing Unexpected New Features of N-, O-, and C-Glycosylation

被引:40
作者
Franc, Vojtech
Yang, Yang
Heck, Albert J. R. [1 ]
机构
[1] Univ Utrecht, Bijvoet Ctr Biomol Res Sci, Biomol Mass Spectrometry & Prote, Padualaan 8, NL-3584 CH Utrecht, Netherlands
基金
欧盟地平线“2020”;
关键词
NATIVE MASS-SPECTROMETRY; MEMBRANE ATTACK COMPLEX; PROTEIN GLYCOSYLATION; 9TH COMPONENT; PHOSPHORYLATION; HETEROGENEITY; ANTIBODIES; PROTEOMICS; SYSTEM; USAGE;
D O I
10.1021/acs.analchem.6b04527
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The human complement C9 protein (similar to 65 kDa) is a member of the complement pathway. It plays an essential role in the membrane attack complex (MAC), which forms a lethal pore on the cellular surface of pathogenic bacteria. Here, we charted in detail the structural microhetqrogeneity of C9 purified from human blood serum, using an integrative workflow combining high-resolution native mass spectrometry and (glyco)peptide-centric proteomics. The proteoform profile of C9 was acquired by high-resolution native mass spectrometry, which revealed the co-occurrence of similar to 50 distinct mass spectrometry (MS) signals. Subsequent peptide-centric analysis, through proteolytic digestion of C9 and liquid chromatography (LC)-tandem mass spectrometry (MS/MS) measurements of the resulting peptide mixtures, provided site specific quantitative profiles of three different types of C9 glycosylation and validation of the native MS data. Our study provides a detailed specification, validation, and quantification of 15 co-Occurring C9 proteoforms and the first direct experimental evidence of 0-linked glycans in the N-terminal region. Additionally, next "to the two known glycosylation sites," a third novel, albeit low abundant, N-glycosylation site on C9 is identified, which surprisingly does not possess the canonical N-glycosylation sequence N-X-S/T. Our data also reveal a binding of up to two Ca2+ ions to C9. Mapping all detected and validated sites of modifications on a structural model of C9, as present in the MAC, hints at their putative roles in pore formation or receptor interactions. The applied methods herein represent a powerful tool for the unbiased in-depth analysis of plasma proteins and may advance biomarker discovery, as aberrant glycosylation profiles may be indicative of the pathophysiological state of the patients.
引用
收藏
页码:3483 / 3491
页数:9
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