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首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Enhanced factor VIIIa stability of A2 domain interface variants results from an increased apparent affinity for the A2 subunit. Results from an increased apparent affinity for the A2 subunit.
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Enhanced factor VIIIa stability of A2 domain interface variants results from an increased apparent affinity for the A2 subunit. Results from an increased apparent affinity for the A2 subunit.

机译:A2域界面变异体的增强的VIIIa因子稳定性来自对A2亚基的表观亲和力增加。对A2亚基表观亲和力增加的结果。

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摘要

Factor (F)VIIIa, a heterotrimer comprised of A1, A2, and A3C1C2 subunits, is labile due to the tendency of the A2 subunit to dissociate from the A1/A3C1C2 dimer. As dissociation of the A2 subunit inactivates FVIIIa activity, retention of A2 defines FVIIIa stability and thus, FXase activity. Earlier results showed that replacing residues D519, E665, and E1984 at the A2 domain interface with Ala or Val reduced rates of FVIIIa decay, increasing FXa and thrombin generation. We now show the enhanced FVIIIa stability of these variants results from increases in inter-A2 subunit affinity. Using a FVIIIa reconstitution assay to monitor inter-subunit affinity by activity regeneration, the apparent Kd value for the interaction of wild-type (WT) A2 subunit with WT A1/A3C1C2 dimer (43 ± 2 nM) was significantly higher than values observed for the A2 point mutants D519A/V, E665A/V, and E1984A/V which ranged from ~5 to ~19 nM. Val was determined to be the optimal hydrophobic residue at position 665 (apparent Kd = 5.1 ± 0.7 nM) as substitutions with Ile or Leu at this position increased the apparent Kd value by ~3- and ~7-fold, respectively. Furthermore, the double mutant (D519V/E665V) showed an ~47-fold lower apparent Kd value (0.9 ± 0.6 nM) than WT. Thus these hydrophobic mutations at the A2 subunit interfaces result in high binding affinities for the A2 subunit and correlate well with previously observed reductions in rates in FVIIIa decay.
机译:因子(F)VIIIa是由A1,A2和A3C1C2亚基组成的异源三聚体,由于A2亚基趋于从A1 / A3C1C2二聚体解离的趋势而不稳定。由于A2亚基的解离使FVIIIa活性失活,A2的保留决定了FVIIIa的稳定性,进而决定了FXase的活性。较早的结果表明,用Ala或Val替换A2域界面上的残基D519,E665和E1984会降低FVIIIa衰减的速率,从而增加FXa和凝血酶的产生。我们现在显示出这些变异的增强的FVIIIa稳定性是由于A2间亚基之间亲和力的增加所致。使用FVIIIa重组测定法通过活性再生监测亚基间亲和力,野生型(WT)A2亚基与WT A1 / A3C1C2二聚体(43±2 nM)相互作用的表观Kd值明显高于观察到的Kd值。 A2点突变体D519A / V,E665A / V和E1984A / V,范围从〜5到〜19 nM。 Val被确定为在665位的最佳疏水残基(表观Kd = 5.1±0.7 nM),因为在该位置被Ile或Leu取代后,表观Kd值分别增加了约3倍和约7倍。此外,双突变体(D519V / E665V)的表观Kd值(0.9±0.6 nM)比WT低约47倍。因此,在A2亚基界面处的这些疏水突变导致对A2亚基的高结合亲和力,并且与先前观察到的FVIIIa衰变速率的降低良好相关。

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