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血管性血友病因子中A1A2A3结构域的功能包括与多聚体蛋白1结合。

The functions of the A1A2A3 domains in von Willebrand factor include multimerin 1 binding.

作者信息

Parker D'Andra N, Tasneem Subia, Farndale Richard W, Bihan Dominique, Sadler J Evan, Sebastian Silvie, de Groot Philip G, Hayward Catherine P M

机构信息

Catherine P. M. Hayward, McMaster University Medical Centre, HSC 2N29A, 1200 Main St. West, Hamilton, Ontario, Canada L8N 3Z5, Tel.: +1 905 521 2100 Ext. 76274, Fax: +1 905 521 2338, E-mail:

出版信息

Thromb Haemost. 2016 Jul 4;116(1):87-95. doi: 10.1160/TH15-09-0700. Epub 2016 Apr 7.

Abstract

Multimerin 1 (MMRN1) is a massive, homopolymeric protein that is stored in platelets and endothelial cells for activation-induced release. In vitro, MMRN1 binds to the outer surfaces of activated platelets and endothelial cells, the extracellular matrix (including collagen) and von Willebrand factor (VWF) to support platelet adhesive functions. VWF associates with MMRN1 at high shear, not static conditions, suggesting that shear exposes cryptic sites within VWF that support MMRN1 binding. Modified ELISA and surface plasmon resonance were used to study the structural features of VWF that support MMRN1 binding, and determine the affinities for VWF-MMRN1 binding. High shear microfluidic platelet adhesion assays determined the functional consequences for VWF-MMRN1 binding. VWF binding to MMRN1 was enhanced by shear exposure and ristocetin, and required VWF A1A2A3 region, specifically the A1 and A3 domains. VWF A1A2A3 bound to MMRN1 with a physiologically relevant binding affinity (KD: 2.0 ± 0.4 nM), whereas the individual VWF A1 (KD: 39.3 ± 7.7 nM) and A3 domains (KD: 229 ± 114 nM) bound to MMRN1 with lower affinities. VWF A1A2A3 was also sufficient to support the adhesion of resting platelets to MMRN1 at high shear, by a mechanism dependent on VWF-GPIbα binding. Our study provides new information on the molecular basis of MMRN1 binding to VWF, and its role in supporting platelet adhesion at high shear. We propose that at sites of vessel injury, MMRN1 that is released following activation of platelets and endothelial cells, binds to VWF A1A2A3 region to support platelet adhesion at arterial shear rates.

摘要

多聚体蛋白1(MMRN1)是一种大量的同聚蛋白,储存在血小板和内皮细胞中,用于激活诱导释放。在体外,MMRN1结合到活化血小板和内皮细胞的外表面、细胞外基质(包括胶原蛋白)以及血管性血友病因子(VWF),以支持血小板的黏附功能。VWF在高剪切力而非静态条件下与MMRN1结合,这表明剪切力会暴露VWF内支持MMRN1结合的隐蔽位点。采用改良酶联免疫吸附测定法(ELISA)和表面等离子体共振技术研究支持MMRN1结合的VWF的结构特征,并确定VWF与MMRN1结合的亲和力。高剪切力微流体血小板黏附试验确定了VWF与MMRN1结合的功能后果。剪切力暴露和瑞斯托霉素可增强VWF与MMRN1的结合,且需要VWF的A1A2A3区域,特别是A1和A3结构域。VWF A1A2A3以生理相关的结合亲和力(KD:2.0±0.4 nM)与MMRN1结合,而单个VWF A1结构域(KD:39.3±7.7 nM)和A3结构域(KD:229±114 nM)与MMRN1的结合亲和力较低。VWF A1A2A3也足以通过依赖VWF与糖蛋白Ibα(GPIbα)结合的机制,在高剪切力下支持静息血小板与MMRN1的黏附。我们的研究提供了关于MMRN1与VWF结合的分子基础及其在高剪切力下支持血小板黏附作用的新信息。我们提出,在血管损伤部位,血小板和内皮细胞激活后释放的MMRN1与VWF A1A2A3区域结合,以支持动脉剪切速率下的血小板黏附。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d2d/5175582/8431d0629329/TH-116-01-15090700-g001.jpg

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