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凝血酶原酶复合物对凝血酶原的激活。底物-膜相互作用对催化作用的贡献。

The activation of prothrombin by the prothrombinase complex. The contribution of the substrate-membrane interaction to catalysis.

作者信息

Walker R K, Krishnaswamy S

机构信息

Department of Medicine, Emory University, Atlanta, Georgia 30322.

出版信息

J Biol Chem. 1994 Nov 4;269(44):27441-50.

PMID:7961657
Abstract

The conversion of prothrombin to thrombin requires the cleavage of two peptide bonds and is catalyzed by the prothrombinase complex composed of factors Xa and Va assembled on a membrane surface. Presteady-state kinetic studies of the effects of membranes on the proteolytic reaction were undertaken using model membranes composed of phosphatidylcholine and phosphatidylserine (PCPS). The concentration of PCPS was varied to alter the concentration of free phospholipid available for substrate binding without influencing the concentration of membrane-assembled prothrombinase. In fluorescence stopped-flow measurements, increasing concentrations of PCPS resulted in an increase in the rate of product formation. Assessment of bond cleavage by sodium dodecyl sulfate-polyacrylamide gel electrophoresis following rapid chemical quench using 125I-prothrombin revealed that the activation reaction proceeded through the ordered cleavage at Arg323-Ile324 followed by cleavage at Art274-Thr275 at all concentrations of PCPS. Increasing the PCPS concentration resulted in a large increase in the Arg323-Ile324 cleavage reaction with a much smaller effect on the subsequent cleavage at Arg274-Thr275, thereby leading to an increase in the extent of accumulation of the intermediate, meizothrombin. Fluorescence stopped-flow and rapid chemical quench measurements were also conducted using prethrombin 2 plus fragment 1.2 or meizothrombin as substrates to assess the influence of PCPS on the individual cleavage reactions. The rate of cleavage at Arg323-Ile324 by prothrombinase was increased approximately 60-fold with increasing PCPS, whereas the cleavage at Arg274-Thr275 was increased by a factor of approximately 5. These differential effects of PCPS on the two cleavage reactions adequately explain changes in the extent of accumulation of meizothrombin during prothrombin activation. Proteolytic removal of the membrane binding fragment 1 domain of the substrates, meizothrombin and prethrombin 2-fragment 1.2, had no effect on the cleavage at Arg274-Thr275 at saturating PCPS but completely eliminated the membrane-dependent rate enhancement for cleavage at Arg323-Ile324. Thus, membrane binding by the substrate is essential for the first cleavage reaction at Arg323-Ile324, which leads to the conversion of prothrombin to meizothrombin. In contrast, the substrate-membrane interaction mediated by the fragment 1 domain has no detectable effect on the second cleavage reaction at Arg274-Thr275 which is required for the conversion of meizothrombin to thrombin.

摘要

凝血酶原转化为凝血酶需要切断两个肽键,并由组装在膜表面的因子Xa和Va组成的凝血酶原酶复合物催化。使用由磷脂酰胆碱和磷脂酰丝氨酸(PCPS)组成的模型膜对膜对蛋白水解反应的影响进行了稳态前动力学研究。改变PCPS的浓度以改变可用于底物结合的游离磷脂的浓度,而不影响膜组装的凝血酶原酶的浓度。在荧光停流测量中,PCPS浓度的增加导致产物形成速率的增加。使用125I-凝血酶原进行快速化学淬灭后,通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳评估键的断裂,结果表明,在所有PCPS浓度下,激活反应通过在Arg323-Ile324处的有序切割,随后在Art274-Thr275处切割进行。PCPS浓度的增加导致Arg323-Ile324切割反应大幅增加,而对随后在Arg274-Thr275处的切割影响较小,从而导致中间产物中凝血酶原的积累程度增加。还使用凝血酶原2加片段1.2或中凝血酶作为底物进行荧光停流和快速化学淬灭测量,以评估PCPS对各个切割反应的影响。随着PCPS浓度的增加,凝血酶原酶在Arg323-Ile324处的切割速率增加了约60倍,而在Arg274-Thr275处的切割增加了约5倍。PCPS对这两个切割反应的不同影响充分解释了凝血酶原激活过程中中凝血酶积累程度的变化。对底物中凝血酶和凝血酶原2-片段1.2的膜结合片段1结构域进行蛋白水解去除,在饱和PCPS条件下对Arg274-Thr275处的切割没有影响,但完全消除了Arg323-Ile324处切割的膜依赖性速率增强。因此,底物与膜的结合对于Arg323-Ile324处的第一次切割反应至关重要,该反应导致凝血酶原转化为中凝血酶。相反,由片段1结构域介导的底物-膜相互作用对中凝血酶转化为凝血酶所需的Arg274-Thr275处的第二次切割反应没有可检测到的影响。

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