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血管性血友病因子的D'D3结构域对A1结构域的屏蔽作用调节其与血小板糖蛋白Ib-IX-V的相互作用。

Shielding of the A1 domain by the D'D3 domains of von Willebrand factor modulates its interaction with platelet glycoprotein Ib-IX-V.

作者信息

Ulrichts Hans, Udvardy Miklós, Lenting Peter J, Pareyn Inge, Vandeputte Nele, Vanhoorelbeke Karen, Deckmyn Hans

机构信息

Laboratory for Thrombosis Research, Interdisciplinary Research Center, Katholieke Universiteit Leuven Campus Kortrijk, B-8500 Kortrijk, Belgium.

出版信息

J Biol Chem. 2006 Feb 24;281(8):4699-707. doi: 10.1074/jbc.M513314200. Epub 2005 Dec 22.

Abstract

Soluble von Willebrand factor (VWF) has a low affinity for platelet glycoprotein (GP) Ibalpha and needs immobilization and/or high shear stress to enable binding of its A1 domain to the receptor. The previously described anti-VWF monoclonal antibody 1C1E7 enhances VWF/GPIbalpha binding and recognizes an epitope in the amino acids 764-1035 region in the N-terminal D'D3 domains. In this study we demonstrated that the D'D3 region negatively modulates the VWF/GPIb-IX-V interaction; (i) deletion of the D'D3 region in VWF augmented binding to GPIbalpha, suggesting an inhibitory role for this region, (ii) the isolated D'D3 region inhibited the GPIbalpha interaction of a VWF deletion mutant lacking this region, indicating that intramolecular interactions limit the accessibility of the A1 domain, (iii) using a panel of anti-VWF monoclonal antibodies, we next showed that the D'D3 region is in close proximity with the A1 domain in soluble VWF but not when VWF was immobilized; (iv) destroying the epitope of 1C1E7 resulted in a mutant VWF with an increased affinity for GPIbalpha. Our results support a model of domain translocation in VWF that allows interaction with GPIbalpha. The suggested shielding interaction of the A1 domain by the D'D3 region then becomes disrupted by VWF immobilization.

摘要

可溶性血管性血友病因子(VWF)对血小板糖蛋白(GP)Ibalpha的亲和力较低,需要固定化和/或高剪切应力才能使其A1结构域与受体结合。先前描述的抗VWF单克隆抗体1C1E7增强VWF/GPIbalpha结合,并识别N端D'D3结构域中764-1035氨基酸区域的一个表位。在本研究中,我们证明D'D3区域对VWF/GPIb-IX-V相互作用具有负调节作用;(i)VWF中D'D3区域的缺失增加了与GPIbalpha的结合,表明该区域具有抑制作用,(ii)分离的D'D3区域抑制了缺乏该区域的VWF缺失突变体与GPIbalpha的相互作用,表明分子内相互作用限制了A1结构域的可及性,(iii)使用一组抗VWF单克隆抗体,我们接下来表明,在可溶性VWF中,D'D3区域与A1结构域紧密相邻,但在VWF固定化时则不然;(iv)破坏1C1E7的表位导致突变体VWF对GPIbalpha的亲和力增加。我们的结果支持VWF中结构域易位的模型,该模型允许与GPIbalpha相互作用。然后,D'D3区域对A1结构域的屏蔽相互作用因VWF固定化而被破坏。

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