Center for Diagnostics & Therapeutics and Department of Chemistry, Georgia State University , Atlanta, Georgia 30302, United States.
Department of Chemistry, College of Science, Albaha University , Baljurashi, Albaha 65635, Saudi Arabia.
J Proteome Res. 2017 Sep 1;16(9):3348-3362. doi: 10.1021/acs.jproteome.7b00359. Epub 2017 Jul 27.
Human plasma von Willebrand Factor (VWF) plays essential roles in primary hemostasis in cooperation with other coagulations factors. There is ample indication that glycosylation affects many biological phases during the protein life cycle. However, comprehensive characterization of all probable N-glycosites simultaneous with O-glycosites is still not fully revealed. Thus, the intention of this exploration was to estimate the occupancy of all canonical N-glycosites besides simultaneous characterization of N- and O-glycoforms. An RP-LC-MS/MS system functionalized with CID and HCD tandem mass was utilized to analyze VWF. N-Glycosite occupancy varied along the protein backbone chain. Out of 257 HCD spectra, 181 characterized glycoforms were specified as either N- or O-glycosites. Sequential cleavage of glycosidic bonds along with Human Database mass matching have confirmed the glycoform structures. A total of 173 glycoforms represented most commonly biantennary and infrequently tri- and tetra-antennary N-glycans beside high mannose, hybrid, ABH antigen-terminated, and sulfated N-glycans. Many glycoforms were common across all N-sites. Noteworthy, previously unreported N-glycosites within domain D'(TIL'-E') showed glycosylation. Moreover, sialylated core 1 and core 2 O-glycans were detected on 2298T. Given subtle characterization of site-specific glycoforms, we can attain a profound understanding of the biological roles of VWF as well as facilitate the production of VWF-based therapeutics.
人血浆血管性血友病因子 (VWF) 与其他凝血因子协同作用,在初级止血中发挥重要作用。有充分的证据表明,糖基化会影响蛋白质生命周期中的许多生物学阶段。然而,对所有可能的 N-糖基化位点与 O-糖基化位点的综合特征描述尚未完全揭示。因此,本研究旨在评估所有典型 N-糖基化位点的占有率,同时对 N-和 O-糖型进行特征描述。我们使用带有 CID 和 HCD 串联质谱的 RP-LC-MS/MS 系统来分析 VWF。N-糖基化位点的占有率沿蛋白质主链链变化。在 257 个 HCD 谱中,181 个特征糖型被指定为 N-或 O-糖基化位点。糖基键的顺序切割以及与人类数据库质量匹配证实了糖型结构。总共 173 种糖型代表了最常见的双天线和罕见的三天线和四天线 N-聚糖,以及高甘露糖、杂合、ABH 抗原末端和硫酸化 N-聚糖。许多糖型在所有 N-位点都很常见。值得注意的是,在 D'(TIL'-E')结构域内以前未报道过的 N-糖基化位点显示出糖基化。此外,在 2298T 上检测到核心 1 和核心 2 唾液酸化 O-聚糖。鉴于对特定位点糖型的细微特征描述,我们可以深入了解 VWF 的生物学作用,并有助于 VWF 为基础的治疗药物的生产。