首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Ratcheting of the substrate from the zymogen to proteinase conformations directs the sequential cleavage of prothrombin by prothrombinase
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Ratcheting of the substrate from the zymogen to proteinase conformations directs the sequential cleavage of prothrombin by prothrombinase

机译:从酶原到蛋白酶构象的底物的棘齿引导着凝血酶原酶对凝血酶原的顺序切割

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摘要

Prothrombinase catalyzes thrombin formation by the ordered cleavage of two peptide bonds in prothrombin. Although these bonds are likely ≈36 Å apart, sequential cleavage of prothrombin at Arg-320 to produce meizothrombin, followed by its cleavage at Arg-271, are both accomplished by equivalent exosite interactions that tether each substrate to the enzyme and facilitate presentation of the scissile bond to the active site of the catalyst. We show that impairing the conformational transition from zymogen to active proteinase that accompanies the formation of meizothrombin has no effect on initial cleavage at Arg-320 but inhibits subsequent cleavage at Arg-271. Full thermodynamic rescue of this defective mutant was achieved by stabilizing the proteinase-like conformation of the intermediate with a reversible, active site-specific inhibitor. Irreversible stabilization of intact prothrombin in a proteinase-like state, even without prior cleavage at Arg-320, also enhanced cleavage at Arg-271. Our results indicate that the sequential presentation and cleavage of the two scissile bonds in prothrombin activation is accomplished by substrate bound either in the zymogen or proteinase conformations. The ordered cleavage of prothrombin by prothrombinase is driven by ratcheting of the substrate from the zymogen to the proteinase-like states.
机译:凝血酶原酶通过凝血酶原中两个肽键的有序切割来催化凝血酶的形成。尽管这些键可能相距约≈36Å,但凝血酶原在Arg-320处的顺序裂解产生了meothothrombin,随后在Arg-271处的裂解,都是通过等效的异位相互作用完成的,该相互作用将每个底物束缚在酶上,并促进了与催化剂活性位点的易断裂键。我们表明,损害从酶原到伴随着meothothrombin的形成的活性蛋白酶的构象转变对在Arg-320的初始切割没有影响,但是在Arg-271上抑制了随后的切割。通过用可逆的,活性位点特异性抑制剂稳定中间体的蛋白酶样构象,可以完全挽救该缺陷突变体。完整的凝血酶原在蛋白酶样状态下的不可逆稳定,即使没有事先在Arg-320处裂解,也增强了在Arg-271处的裂解。我们的结果表明,凝血酶原激活过程中两个易断裂键的顺序呈递和裂解是通过结合酶原或蛋白酶构象的底物完成的。凝血酶原酶对凝血酶原的有序切割是通过将底物从酶原棘齿化为蛋白酶样状态来驱动的。

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