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一种独特的血管性血友病变异体的分子特征。一种影响血管性血友病因子/凝血因子VIII相互作用的新突变。

Molecular characterization of a unique von Willebrand disease variant. A novel mutation affecting von Willebrand factor/factor VIII interaction.

作者信息

Cacheris P M, Nichols W C, Ginsburg D

机构信息

Howard Hughes Medical Institute, University of Michigan Medical School, Ann Arbor 48109.

出版信息

J Biol Chem. 1991 Jul 25;266(21):13499-502.

PMID:1906877
Abstract

von Willebrand factor (vWF) plays a central role in blood coagulation, mediating the adhesion of the initial platelet plug to the subendothelium, and serving as the carrier for factor VIII (FVIII) in the circulation. In previous studies, we have mapped the epitope for an anti-vWF monoclonal antibody which inhibits the interaction between FVIII and vWF to a region spanning Thr78 to Thr96 of the mature protein (Bahou, W.F., Ginsburg, D., Sikkink, R., Litwiller, R., and Fass, D. N. (1989) J. Clin. Invest. 84, 56-61). We now report the identification of a mutation within this region of vWF that results in decreased FVIII binding. Sequence analysis of polymerase chain reaction amplified platelet vWF mRNA from a von Willebrand disease (vWD) patient with a disproportionately low FVIII level identified a single nucleotide substitution (G----A), resulting in the conversion of Arg91----Gln. Recombinant vWF carrying this substitution showed decreased binding to FVIII compared with wild-type vWF or vWF carrying a polymorphic substitution in the same region (Arg89----Gln). These observations suggest a critical role for Arg91 in the interaction of vWF with FVIII and identify the molecular mechanism for a variant of vWD associated with unusually low FVIII levels.

摘要

血管性血友病因子(vWF)在血液凝固过程中起核心作用,介导最初的血小板栓子与内皮下层的黏附,并在循环中作为凝血因子VIII(FVIII)的载体。在先前的研究中,我们已将一种抑制FVIII与vWF相互作用的抗vWF单克隆抗体的表位定位到成熟蛋白的Thr78至Thr96区域(Bahou,W.F.,Ginsburg,D.,Sikkink,R.,Litwiller,R.,和Fass,D.N.(1989年)《临床研究杂志》84,56 - 61)。我们现在报告在vWF的这一区域内鉴定出一个导致FVIII结合减少的突变。对一名血管性血友病(vWD)患者的血小板vWF mRNA进行聚合酶链反应扩增后的序列分析发现,该患者FVIII水平异常低,结果鉴定出一个单核苷酸替换(G→A),导致Arg91转变为Gln。与野生型vWF或在同一区域携带多态性替换(Arg89→Gln)的vWF相比,携带此替换的重组vWF显示出与FVIII的结合减少。这些观察结果表明Arg91在vWF与FVIII的相互作用中起关键作用,并确定了与异常低FVIII水平相关的vWD变异体的分子机制。

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