首页> 外文期刊>Blood: The Journal of the American Society of Hematology >A membrane-interactive surface on the factor VIII C1 domain cooperates with the C2 domain for cofactor function.
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A membrane-interactive surface on the factor VIII C1 domain cooperates with the C2 domain for cofactor function.

机译:因子VIII C1结构域上的膜相互作用表面与C2结构域协同发挥辅助因子功能。

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摘要

Factor VIII binds to phosphatidylserine (PS)-containing membranes through its tandem, lectin-homology, C1 and C2 domains. However, the details of C1 domain membrane binding have not been delineated. We prepared 4 factor VIII C1 mutations localized to a hypothesized membrane-interactive surface (Arg2090Ala/Gln2091Ala, Lys2092Ala/Phe2093Ala, Gln2042Ala/Tyr2043Ala, and Arg2159Ala). Membrane binding and cofactor activity were measured using membranes with 15% PS, mimicking platelets stimulated by thrombin plus collagen, and 4% PS, mimicking platelets stimulated by thrombin. All mutants had at least 10-fold reduced affinities for membranes of 4% PS, and 3 mutants also had decreased apparent affinity for factor X. Monoclonal antibodies against the C2 domain produced different relative impairment of mutants compared with wild-type factor VIII. Monoclonal antibody ESH4 decreased the V(max) for all mutants but only the apparent membrane affinity for wild-type factor VIII. Monoclonal antibody BO2C11 decreased the V(max) of wild-type factor VIII by 90% but decreased the activity of 3 mutants more than 98%. These results identify a membrane-binding face of the factor VIII C1 domain, indicate an influence of the C1 domain on factor VIII binding to factor X, and indicate that cooperation between the C1 and C2 domains is necessary for full activity of the factor Xase complex.
机译:因子VIII通过其串联,凝集素同源性,C1和C2域与含磷脂酰丝氨酸(PS)的膜结合。然而,尚未描述C1结构域膜结合的细节。我们准备了4个VIII因子C1突变,它们位于假设的膜相互作用表面(Arg2090Ala / Gln2091Ala,Lys2092Ala / Phe2093Ala,Gln2042Ala / Tyr2043Ala和Arg2159Ala)。使用具有15%PS的膜(模拟由凝血酶和胶原蛋白刺激的血小板)和具有4%PS(模拟的由凝血酶刺激的血小板)的膜,测量膜结合和辅因子活性。所有突变体对4%PS的膜的亲和力至少降低10倍,并且3个突变体对X因子的表观亲和力也降低。与野生型VIII因子相比,针对C2域的单克隆抗体产生的突变体相对损伤程度有所不同。单克隆抗体ESH4降低了所有突变体的V(max),但仅降低了对野生型VIII的表观亲和力。单克隆抗体BO2C11使野生型因子VIII的V(max)降低了90%,但使3个突变体的活性降低了98%以上。这些结果鉴定了因子VIII C1结构域的膜结合面,表明了C1结构域对因子VIII与因子X结合的影响,并且表明C1和C2域之间的合作对于因子Xase复合物的完整活性是必需的。

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