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凝血因子 VIIIa 的 A2 及 A3-C1-C2 亚基对凝血因子 X 酶中凝血因子 IXa 亲和力的作用。

Contribution of factor VIIIa A2 and A3-C1-C2 subunits to the affinity for factor IXa in factor Xase.

作者信息

Jenkins P Vincent, Dill Julie L, Zhou Qian, Fay Philip J

机构信息

Department of Biochemistry and Biophysics, University of Rochester School of Medicine, 601 Elmwood Avenue, Rochester, New York 14642, USA.

出版信息

Biochemistry. 2004 May 4;43(17):5094-101. doi: 10.1021/bi036289p.

Abstract

Contributions of factor (F) VIIIa subunits to cofactor association with FIXa were evaluated. Steady-state fluorescence resonance energy transfer using an acrylodan-labeled A3-C1-C2 subunit and fluorescein-Phe-Phe-Arg-FIXa yielded K(d) values of 52 +/- 10 and 197 +/- 55 nM in the presence and absence of phospholipid vesicles, respectively. A3-C1-C2 was an effective competitor of FVIIIa binding to FIXa as judged by inhibition of FXa generation performed in the absence of vesicles (K(i) approximately 1.6K(d) for FVIIIa-FIXa). However, the capacity for A3-C1-C2 to inhibit FVIIIa-dependent FXa generation in the presence of phospholipid was poor with a K(i) values (approximately 400 nM) that were approximately 100-fold greater than the K(d) for FVIIIa-FIXa interaction (4.2 +/- 0.6 nM). These results indicated that a significant component of the interprotein affinity is contributed by FVIIIa subunits other than A3-C1-C2 in the membrane-dependent complex. The isolated A2 subunit of FVIIIa interacts weakly with FIXa, and recent modeling studies have implicated a number of residues that potentially contact the FIXa protease domain (Bajaj et al. (2001) J. Biol. Chem. 276, 16302-16309). Site-directed mutagenesis of candidate residues in the A2 domain was performed, and recombinant proteins were stably expressed and purified. Functional affinity determinations demonstrated that one mutant, FVIII/Asp712Ala exhibited an 8-fold increased K(d) (35 +/- 1.5 nM) relative to wild-type suggesting a contribution by this residue of approximately 10% of the FVIIIa-FIXa binding energy. Thus both A2 and A3-C1-C2 subunits contribute to the affinity of FVIIIa for FIXa in the membrane-dependent FXase.

摘要

评估了因子(F)VIIIa亚基对与FIXa辅因子结合的贡献。使用丙烯酰丹标记的A3-C1-C2亚基和荧光素-Phe-Phe-Arg-FIXa进行稳态荧光共振能量转移,在存在和不存在磷脂囊泡的情况下,分别产生的解离常数(K(d))值为52±10 nM和197±55 nM。根据在不存在囊泡的情况下进行的FXa生成抑制判断,A3-C1-C2是FVIIIa与FIXa结合的有效竞争者(FVIIIa-FIXa的抑制常数(K(i))约为1.6K(d))。然而,在存在磷脂的情况下,A3-C1-C2抑制FVIIIa依赖性FXa生成的能力较差,其抑制常数(K(i))值(约400 nM)比FVIIIa-FIXa相互作用的K(d)(4.2±0.6 nM)大约100倍。这些结果表明,在膜依赖性复合物中,除A3-C1-C2之外的FVIIIa亚基对蛋白质间亲和力有重要贡献。FVIIIa的分离A2亚基与FIXa弱相互作用,最近的建模研究表明有许多潜在接触FIXa蛋白酶结构域的残基(Bajaj等人(2001年)《生物化学杂志》276, 16302 - 16309)。对A2结构域中的候选残基进行了定点诱变,并稳定表达和纯化了重组蛋白。功能亲和力测定表明,一个突变体FVIII/Asp712Ala相对于野生型的解离常数(K(d))增加了8倍(35±1.5 nM),表明该残基对FVIIIa-FIXa结合能量的贡献约为10%。因此,A2和A3-C1-C2亚基都对膜依赖性FXase中FVIIIa与FIXa的亲和力有贡献。

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