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Interaction of prothrombin with a phospholipid surface: evidence for a membrane-induced conformational change

机译:凝血酶原与磷脂表面的相互作用:膜诱导的构象变化的证据

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摘要

Prothrombin interacts with phosphatidylserine containing platelet membranes via its N-terminal, γ-carboxyglutamate (gla) residue-rich domain. Once bound it is cleaved to form the active protease, thrombin (factor IIa). Human prothrombin was cleaved with cathepsin G in the absence of calcium and magnesium ions. Under these conditions, the gla domain was removed. Phospholipid protected the protein from this proteolytic event, and this suggests that a conformational change may be induced by interaction with phospholipids. Binding of prothrombin to a surface containing 20% phosphatidylserine/80% phosphatidylcholine was detected by surface plasmon resonance, whereas no interaction with gla-domainless prothrombin was observed. Binding of intact prothrombin in the presence of calcium ions showed complex association kinetics, suggesting multiple modes of initial interaction with the surface. The kinetics of the dissociation phase could be fitted to a two-phase, exponential decay. This implies that there are at least two forms of the protein on the surface one of which dissociates tenfold more slowly than the other. Taken together, these data suggest that, on binding to a membrane surface, prothrombin undergoes a conformational change to a form which binds more tightly to the membrane.
机译:凝血酶原通过其N末端富含γ-羧基谷氨酸(gla)残基的结构域与含磷脂酰丝氨酸的血小板膜相互作用。结合后,将其切割形成活性蛋白酶凝血酶(因子IIa)。在不存在钙和镁离子的情况下,用组织蛋白酶G裂解人凝血酶原。在这些条件下,gla结构域被去除。磷脂保护蛋白质免受这种蛋白水解事件的影响,这表明构象变化可能是由于与磷脂相互作用而引起的。通过表面等离振子共振检测到凝血酶原与包含20%磷脂酰丝氨酸/ 80%磷脂酰胆碱的表面的结合,而未观察到与无gla-域的凝血酶原的相互作用。完整的凝血酶原在钙离子存在下的结合表现出复杂的缔合动力学,表明与表面初始相互作用的多种模式。离解相的动力学可以拟合为两相指数衰减。这意味着该表面上至少存在两种​​形式的蛋白质,其中一种形式的解离速度比另一种形式慢十倍。综上所述,这些数据表明,凝血酶原在与膜表面结合时经历构象变化,从而形成与膜更紧密结合的形式。

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