Molecular Biochemistry, Octapharma, Berlin, Germany.
Institute of Chemistry and Biochemistry, Freie Universität Berlin, Berlin, Germany.
J Thromb Haemost. 2016 Apr;14(4):733-46. doi: 10.1111/jth.13260. Epub 2016 Feb 17.
O-glycosylation of von Willebrand factor (VWF) affects many of its functions; however, there is currently no information on the occupancy of the 10 putative O-glycosylation sites.
The aim of this study was the site-specific analysis of VWF O-glycosylation.
Tryptic VWF-O-glycopeptides were isolated by lectin affinity chromatography and/or by reverse-phase high-performance liquid chromatography. Subsequently, the purified glycopeptides were analyzed by glycosidase digestion and mass spectrometry.
We found that all 10 predicted O-glycosylation sites in VWF are occupied. The majority of the glycan structures on all glycosylation sites is represented by disialyl core 1 O-glycan. The presence of core 2 O-glycan was also confirmed; interestingly, this structure was not evenly distributed among all 10 glycosylation sites. Analysis of the glycopeptides flanking the A1 domain revealed that generally more core-2-type O-glycan was present on the C-terminal Cluster 2 glycopeptide (encompassing T(1468) , T(1477) , S(1486) and T(1487) ) compared with the N-terminal Cluster 1 glycopeptide (encompassing T(1248) , T(1255) , T(1256) and S(1263) ). Disialosyl motifs were present on both glycopeptides flanking the A1 domain and on the glycosylation site T(2298) in the C1 domain. In addition, we identify sulfation of core 2 O-glycans and the presence of the rare Tn antigen.
This is the first study to describe the qualitative and semi-quantitative distribution of O-glycan structures on all 10 O-glycosylation sites, which will provide a valuable starting point for further studies exploring the functional and structural implications of O-glycosylation in VWF.
血管性血友病因子 (VWF) 的 O-糖基化影响其许多功能;然而,目前尚无关于 10 个假定 O-糖基化位点占据情况的信息。
本研究旨在对 VWF O-糖基化进行位点特异性分析。
通过凝集素亲和层析和/或反相高效液相色谱法分离 VWF-O-糖肽。随后,通过糖苷酶消化和质谱分析对纯化的糖肽进行分析。
我们发现 VWF 中的所有 10 个预测 O-糖基化位点均被占据。所有糖基化位点上糖链结构的主要部分是双唾液酸化核心 1 O-聚糖。核心 2 O-聚糖的存在也得到了证实;有趣的是,这种结构并非均匀分布在所有 10 个糖基化位点上。对 A1 结构域侧翼的糖肽进行分析发现,通常 C 末端 Clus-ter 2 糖肽(包含 T(1468)、T(1477)、S(1486)和 T(1487))上存在更多的核心 2 型 O-聚糖,而 N 末端 Clus-ter 1 糖肽(包含 T(1248)、T(1255)、T(1256)和 S(1263))上则较少。A1 结构域侧翼的糖肽以及 C1 结构域中的糖基化位点 T(2298)上均存在二唾液酸基模体。此外,我们还鉴定了核心 2 O-聚糖的硫酸化和罕见 Tn 抗原的存在。
这是第一项描述所有 10 个 O-糖基化位点上 O-聚糖结构的定性和半定量分布的研究,这将为进一步研究 O-糖基化在 VWF 中的功能和结构意义提供有价值的起点。