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血管性血友病因子D3结构域中的一种新型突变显著降低了其与凝血因子VIII结合的能力,并影响其多聚化。

A novel mutation in the D3 domain of von Willebrand factor markedly decreases its ability to bind factor VIII and affects its multimerization.

作者信息

Jorieux S, Gaucher C, Goudemand J, Mazurier C

机构信息

Laboratoire de Recherche sur l'Hémostase, Laboratoire Français du Fractionnement et des Biotechnologies, Lille, France.

出版信息

Blood. 1998 Dec 15;92(12):4663-70.

PMID:9845532
Abstract

In type 2N von Willebrand disease (vWD), von Willebrand factor (vWF) is characterized by normal multimeric pattern, normal platelet-dependent function, but a markedly decreased affinity for factor VIII (FVIII). In this report, we describe the case of a vWD patient who has an abnormal vWF multimers distribution associated with a markedly decreased vWF ability to bind FVIII. Sequencing analysis of patient's vWF gene showed, at heterozygous state, a G-->A transition resulting in the substitution of Asn for Asp at position 116 of the mature vWF subunit and a C-->T transition, changing the codon for Arg 896 into a stop codon. His sister who has a subnormal vWF level, but a normal FVIII/vWF interaction, was found to be heterozygous for the Arg896ter mutation only. Recombinant vWF (rvWF) containing the candidate (Asn116) missense mutation was expressed in COS-7 cells. The expression level of Asn116rvWF was significantly decreased compared with wild-type rvWF. The multimeric pattern of Asn116rvWF was greatly impaired as shown by the decrease in high molecular weight forms. The FVIII binding ability of Asn116rvWF was dramatically decreased. These data show that the Asp116Asn substitution is the cause of both the defective FVIII/vWF interaction and the impaired multimeric pattern observed in the patient's vWF. The monoclonal antibody 31H3 against D' domain of vWF (epitope aa 66-76) that partially inhibits the FVIII binding and recognizes only nonreduced vWF, showed a decreased ability to bind Asn116rvWF when used as capture-antibody in enzyme-linked immunosorbent assay (ELISA). This result suggests that a potential conformation change in the D' domain is induced by the Asp116Asn substitution, which is localized in the D3 domain.

摘要

在2N型血管性血友病(vWD)中,血管性血友病因子(vWF)的特征是多聚体模式正常、血小板依赖性功能正常,但与凝血因子VIII(FVIII)的亲和力显著降低。在本报告中,我们描述了一例vWD患者,其vWF多聚体分布异常,同时vWF与FVIII结合的能力显著下降。对患者vWF基因的测序分析显示,在杂合状态下,一个G→A的转换导致成熟vWF亚基第116位的天冬酰胺替代了天冬氨酸,以及一个C→T的转换,将精氨酸896的密码子变为终止密码子。他的妹妹vWF水平低于正常,但FVIII/vWF相互作用正常,结果发现其仅对Arg896ter突变呈杂合状态。含有候选(天冬酰胺116)错义突变的重组vWF(rvWF)在COS-7细胞中表达。与野生型rvWF相比,天冬酰胺116rvWF的表达水平显著降低。如高分子量形式的减少所示,天冬酰胺116rvWF的多聚体模式严重受损。天冬酰胺116rvWF与FVIII的结合能力显著下降。这些数据表明,天冬氨酸116→天冬酰胺的替代是患者vWF中FVIII/vWF相互作用缺陷和多聚体模式受损的原因。针对vWF D'结构域(表位氨基酸66 - 76)的单克隆抗体31H3,可部分抑制FVIII结合且仅识别非还原型vWF,当在酶联免疫吸附测定(ELISA)中用作捕获抗体时,其与天冬酰胺116rvWF的结合能力下降。该结果表明,位于D3结构域的天冬氨酸116→天冬酰胺替代诱导了D'结构域潜在的构象变化。

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