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人血管性血友病因子的 O-连接聚糖调节其与 ADAMTS-13 的相互作用。

The O-linked glycans of human von Willebrand factor modulate its interaction with ADAMTS-13.

机构信息

Department of Haematology, Faculty of Medicine, Hammersmith Hospital Campus, Imperial College, London, UK.

出版信息

J Thromb Haemost. 2014 Jan;12(1):54-61. doi: 10.1111/jth.12451.

Abstract

BACKGROUND

O-linked glycans (OLGs) are clustered on either side of the von Willebrand factor (VWF) A1 domain and modulate its interaction with platelets; however, their influence on the VWF interaction with ADAMTS-13 is unknown.

OBJECTIVES

To assess the role of the OLGs in VWF susceptibility to ADAMTS-13 proteolysis, which would help to explain their specific distribution.

METHODS

OLG sites were mutated individually and as clusters on either and both sides of the A1 domain, and expressed in HEK293T cells. First, their proteolysis by ADAMTS-13 was assayed in the presence of urea. Next, a parallel-flow chamber was used to analyze VWF-mediated platelet capture on collagen in the presence and absence of ADAMTS-13 under a shear stress of 1500 s(-1) . The decrease in platelet capture in the presence ADAMTS-13 was used as a measure of VWF proteolysis.

RESULTS

Initially, we found that, under denaturing conditions, the C-terminal S1486A and Cluster 2 and double cluster (DC) variants were less susceptible to ADAMTS-13 proteolysis than wild-type VWF. Next, we showed that addition of ADAMTS-13 diminished VWF-mediated platelet capture on collagen under flow; surprisingly, this was more pronounced with the S1486A, Cluster 2 and DC variants than with wild-type VWF, indicating that these are proteolyzed more rapidly under shear flow.

CONCLUSIONS

OLGs provide rigidity to peptide backbones, and our findings suggest that OLG in the A1-A2 linker region regulates VWF conformational changes under shear. Importantly, the impact of OLGs on ADAMTS-13 cleavage under shear stress is the opposite of that under denaturing conditions, highlighting the non-physiologic nature of in vitro cleavage assays.

摘要

背景

O-连接聚糖(OLG)聚集在血管性血友病因子(VWF)A1 结构域的两侧,调节其与血小板的相互作用;然而,它们对 VWF 与 ADAMTS-13 的相互作用的影响尚不清楚。

目的

评估 OLG 在 VWF 对 ADAMTS-13 蛋白水解易感性中的作用,这将有助于解释其特定分布。

方法

单独和作为 A1 结构域两侧的簇突变 OLG 位点,并在 HEK293T 细胞中表达。首先,在存在尿素的情况下测定它们对 ADAMTS-13 的蛋白水解作用。接下来,使用平行流室在 1500 s(-1)剪切应力下分析存在和不存在 ADAMTS-13 时 VWF 介导的胶原上血小板捕获。在存在 ADAMTS-13 的情况下,血小板捕获减少被用作 VWF 蛋白水解的衡量标准。

结果

最初,我们发现,在变性条件下,C 端 S1486A 和簇 2 和双簇(DC)变体比野生型 VWF 对 ADAMTS-13 的蛋白水解作用的敏感性较低。接下来,我们表明,ADAMTS-13 的添加减少了在流动条件下 VWF 介导的胶原上血小板捕获;令人惊讶的是,与野生型 VWF 相比,S1486A、簇 2 和 DC 变体的效果更为明显,这表明它们在剪切流下更快地被蛋白水解。

结论

OLG 为肽骨架提供刚性,我们的发现表明,A1-A2 接头区域中的 OLG 在剪切下调节 VWF 构象变化。重要的是,OLG 对剪切应力下 ADAMTS-13 切割的影响与变性条件下的相反,突出了体外切割测定的非生理性质。

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