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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Conservative mutations in the C2 domains of factor VIII and factor V alter phospholipid binding and cofactor activity
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Conservative mutations in the C2 domains of factor VIII and factor V alter phospholipid binding and cofactor activity

机译:VIII因子和V因子的C2域中的保守突变会改变磷脂结合和辅因子活性

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Factor VIII and factor V share structural homology and bind to phospholipid membranes via tandem, lectin-like C domains. Their respective C2 domains bind via 2 pairs of hydrophobic amino acids and an amphipathic cluster. In contrast, the factor V-like, homologous subunit (Pt-FV) of a prothrombin activator from Pseudonaja textilisvenom is reported to function without membrane binding. We hypothesized that the distinct membrane-interactive amino acids of these proteins contribute to the differing membrane-dependent properties. We prepared mutants in which the C2 domain hydrophobic amino acid pairs were changed to the homologous residues of the other protein and a factor V mutant with 5 amino acids changed to those from Pt-FV (FV MTTS/Y). Factor VIII mutants were active on additional membrane sites and had altered apparent affinities for factor X. Some factor V mutants, including FV MTTS/Y, had increased membrane interaction and apparent membrane-independent activity that was the result of phospholipid retained during purification. Phospholipid-free FV MTTS/Y showed increased activity, particularly a 10-fold increase in activity on membranes lacking phosphatidylserine. The reduced phosphatidylserine requirement correlated to increased activity on resting and stimulated platelets. We hypothesize that altered membrane binding contributes to toxicity of Pt-FV.
机译:因子VIII和因子V具有结构同源性,并通过串联的凝集素样C结构域与磷脂膜结合。它们各自的C2域通过2对疏水氨基酸和两亲簇结合。相反,据报道,来自Pseudonaja textilisvenom的凝血酶原激活剂的因子V样同源亚基(Pt-FV)可以不与膜结合而起作用。我们假设这些蛋白质的独特的膜相互作用氨基酸有助于不同的膜依赖性特性。我们制备了这样的突变体,其中C2域疏水性氨基酸对变成了另一种蛋白质的同源残基,而5个氨基酸的V因子突变体变成了Pt-FV(FV MTTS / Y)。因子VIII突变体在其他膜位点上具有活性,并改变了与因子X的表观亲和力。某些因子V突变体(包括FV MTTS / Y)具有膜相互作用和明显的膜非依赖性活性,这是纯化过程中磷脂保留的结果。无磷脂的FV MTTS / Y表现出增加的活性,尤其是在缺乏磷脂酰丝氨酸的膜上的活性增加了10倍。降低的磷脂酰丝氨酸需求与静息和刺激的血小板活性增加有关。我们假设改变的膜结合有助于Pt-FV的毒性。

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