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O-连接糖蛋白上的唾液酸化可保护血管性血友病因子免受巨噬细胞半乳糖凝集素介导的清除。

Sialylation on O-linked glycans protects von Willebrand factor from macrophage galactose lectin-mediated clearance.

机构信息

Irish Centre for Vascular Biology, School of Pharmacy and Biomolecular Sciences, Royal College of Surgeons in Ireland.

Ludger, Ltd., Culham Science Centre, Abingdon, Oxfordshire OX14 3EB, United Kingdom; Leiden University Medical Centre, Centre for Proteomics and Metabolomics, 2300 RC Leiden.

出版信息

Haematologica. 2022 Mar 1;107(3):668-679. doi: 10.3324/haematol.2020.274720.

Abstract

Terminal sialylation determines the plasma half-life of von Willebrand factor (VWF). A role for macrophage galactose lectin (MGL) in regulating hyposialylated VWF clearance has recently been proposed. In this study, we showed that MGL influences physiological plasma VWF clearance. MGL inhibition was associated with a significantly extended mean residence time and 3-fold increase in endogenous plasma VWF antigen levels (P<0.05). Using a series of VWF truncations, we further demonstrated that the A1 domain of VWF is predominantly responsible for enabling the MGL interaction. Binding of both full-length and VWF-A1-A2-A3 to MGL was significantly enhanced in the presence of ristocetin (P<0.05), suggesting that the MGL-binding site in A1 is not fully accessible in globular VWF. Additional studies using different VWF glycoforms demonstrated that VWF O-linked glycans, clustered at either end of the A1 domain, play a key role in protecting VWF against MGLmediated clearance. Reduced sialylation has been associated with pathological, increased clearance of VWF in patients with von Willebrand disease. Herein, we demonstrate that specific loss of α2-3 linked sialylation from O-glycans results in markedly increased MGL-binding in vitro, and markedly enhanced MGL-mediated clearance of VWF in vivo. Our data further show that the asialoglycoprotein receptor (ASGPR) does not have a significant role in mediating the increased clearance of VWF following loss of O-sialylation. Conversely however, we observed that loss of N-linked sialylation from VWF drives enhanced circulatory clearance predominantly via the ASGPR. Collectively, our data support the hypothesis that in addition to regulating physiological VWF clearance, the MGL receptor works in tandem with ASGPR to modulate enhanced clearance of aberrantly sialylated VWF in the pathogenesis of von Willebrand disease.

摘要

末端唾液酸化决定了血管性血友病因子(VWF)的血浆半衰期。最近提出了巨噬细胞半乳糖凝集素(MGL)在调节低唾液酸化 VWF 清除中的作用。在这项研究中,我们表明 MGL 影响生理血浆 VWF 清除。MGL 抑制与平均停留时间显著延长和内源性血浆 VWF 抗原水平增加 3 倍相关(P<0.05)。使用一系列 VWF 截断物,我们进一步证明 VWF 的 A1 结构域主要负责使 MGL 相互作用成为可能。在存在瑞斯托菌素的情况下,全长和 VWF-A1-A2-A3 与 MGL 的结合均显著增强(P<0.05),这表明 A1 中的 MGL 结合位点在球状 VWF 中不完全可及。使用不同的 VWF 糖型进行的进一步研究表明,VWF O 连接聚糖聚集在 A1 结构域的两端,在保护 VWF 免受 MGL 介导的清除中起关键作用。唾液酸化减少与病理性、血管性血友病患者 VWF 清除增加有关。在此,我们证明 O-聚糖上 α2-3 连接唾液酸化的特异性缺失导致体外 MGL 结合显著增加,并显著增强体内 MGL 介导的 VWF 清除。我们的数据还表明,在 O-唾液酸化丢失后,糖蛋白受体(ASGPR)在介导 VWF 清除增加方面没有重要作用。然而相反,我们观察到 VWF 上 N-连接唾液酸化的丢失主要通过 ASGPR 驱动增强的循环清除。总的来说,我们的数据支持这样的假设,即除了调节生理 VWF 清除外,MGL 受体还与 ASGPR 协同作用,调节血管性血友病发病机制中异常唾液酸化的 VWF 清除增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ab6/8883566/097f45c5f1cf/107668.fig1.jpg

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