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血管性血友病因子精氨酸 1205 取代导致体内巨噬细胞依赖性清除加速。

von Willebrand factor arginine 1205 substitution results in accelerated macrophage-dependent clearance in vivo.

机构信息

Haemostasis Research Group, Institute of Molecular Medicine, Trinity Centre for Health Sciences, St James's Hospital, Trinity College Dublin, Dublin, Ireland.

出版信息

J Thromb Haemost. 2015 May;13(5):821-6. doi: 10.1111/jth.12875. Epub 2015 Apr 13.

Abstract

BACKGROUND

Enhanced von Willebrand factor (VWF) clearance is important in the etiology of type 1 and type 2 von Willebrand disease (VWD). More than 20 different VWF point mutations have already been reported in patients with enhanced clearance. These include the VWD-Vicenza variant, which is characterized by an Arg1205His substitution in the VWF D3 domain. Critically, however, the molecular mechanisms through which single amino acid substitutions in VWF result in enhanced clearance of this complex multimeric glycoprotein have not been defined.

OBJECTIVES

In this study, we have investigated the biological basis underlying the enhanced clearance of the VWF-R1205H variant.

METHODS

Using VWF(-/-) mice, in vivo clearance rates were determined for a series of full-length and truncated recombinant VWF variants. In addition, the role of macrophages in modulating enhanced VWD-Vicenza clearance was investigated using clodronate liposome administration.

RESULTS

Our findings demonstrate that substitutions of R1205 with histidine, cysteine or serine all result in markedly reduced survival of full-length recombinant VWF. Importantly, D'A3 fragments containing these same R1205 substitutions also demonstrated significantly enhanced clearance. In contrast to the reduced in vivo survival observed with R1205H, clearance of R1204H was not enhanced. Recent studies have demonstrated that hepatic and splenic macrophages play key roles in regulating VWF clearance. Importantly, macrophage-depletion also served to markedly attenuate the enhanced clearance phenotypes associated with VWF-R1205H, VWF-R1205S and VWF-R1205C.

CONCLUSIONS

Collectively, these novel findings demonstrate a specific and critical role for the R1205 residue in modulating macrophage-mediated clearance of VWF in vivo.

摘要

背景

增强的血管性血友病因子 (VWF) 清除对于 1 型和 2 型血管性血友病 (VWD) 的病因学很重要。已有超过 20 种不同的 VWF 点突变在清除增强的患者中被报道。这些突变包括 VWD-Vicenza 变体,其特征是 VWF D3 结构域中的 Arg1205His 取代。然而,至关重要的是,尚未确定 VWF 中单个氨基酸取代如何导致这种复杂的多聚糖蛋白的清除增强的分子机制。

目的

本研究旨在探讨 VWF-R1205H 变体清除增强的生物学基础。

方法

使用 VWF(-/-) 小鼠,确定一系列全长和截断重组 VWF 变体的体内清除率。此外,还通过氯膦酸盐脂质体给药研究了巨噬细胞在调节增强型 VWD-Vicenza 清除中的作用。

结果

我们的研究结果表明,用组氨酸、半胱氨酸或丝氨酸替代 R1205 都会导致全长重组 VWF 的存活显著降低。重要的是,含有这些相同 R1205 取代的 D'A3 片段也表现出明显增强的清除。与观察到的 R1205H 体内存活降低相反,R1204H 的清除没有增强。最近的研究表明,肝脏和脾脏巨噬细胞在调节 VWF 清除中发挥关键作用。重要的是,巨噬细胞耗竭也显著减弱了与 VWF-R1205H、VWF-R1205S 和 VWF-R1205C 相关的增强清除表型。

结论

总的来说,这些新发现表明 R1205 残基在调节体内巨噬细胞介导的 VWF 清除中具有特定且关键的作用。

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