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NMR resonance assignments of thrombin reveal the conformational and dynamic effects of ligation

机译:凝血酶的NMR共振分配揭示了连接的构象和动态效应

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摘要

The serine protease thrombin is generated from its zymogen prothrombin at the end of the coagulation cascade. Thrombin functions as the effector enzyme of blood clotting by cleaving several procoagulant targets, but also plays a key role in attenuating the hemostatic response by activating protein C. These activities all depend on the engagement of exosites on thrombin, either through direct interaction with a substrate, as with fibrinogen, or by binding to cofactors such as thrombomodulin. How thrombin specificity is controlled is of central importance to understanding normal hemostasis and how dysregulation causes bleeding or thrombosis. The binding of ligands to thrombin via exosite I and the coordination of Na+ have been associated with changes in thrombin conformation and activity. This phenomenon has become known as thrombin allostery, although direct evidence of conformational change, identification of the regions involved, and the functional consequences remain unclear. Here we investigate the conformational and dynamic effects of thrombin ligation at the active site, exosite I and the Na+-binding site in solution, using modern multidimensional NMR techniques. We obtained full resonance assignments for thrombin in seven differently liganded states, including fully unliganded apo thrombin, and have created a detailed map of residues that change environment, conformation, or dynamic state in response to each relevant single or multiple ligation event. These studies reveal that apo thrombin exists in a highly dynamic zymogen-like state, and relies on ligation to achieve a fully active conformation. Conformational plasticity confers upon thrombin the ability to be at once selective and promiscuous.
机译:丝氨酸蛋白酶凝血酶是在凝血级联反应结束时由其酶原凝血酶产生的。凝血酶通过裂解几个促凝靶点而起凝血作用的酶的作用,但在通过激活蛋白C减弱止血反应中也起着关键作用。这些活动都取决于外泌体与凝血酶的结合,或者通过与底物的直接相互作用来实现。 ,如纤维蛋白原,或通过与辅因子结合,例如血栓调节蛋白。如何控制凝血酶的特异性对于理解正常的止血以及失调如何引起出血或血栓形成至关重要。配体通过外位I与凝血酶的结合以及Na + 的配位与凝血酶构象和活性的变化有关。尽管构象改变的直接证据,所涉及区域的识别以及功能后果尚不清楚,但这种现象已被称为凝血酶变构。在这里,我们使用现代多维NMR技术研究了溶液中凝血酶在活性位点,外位点I和Na + 结合位点上的构象和动力学效应。我们获得了七个完全不同配体状态(包括完全未配基的载脂蛋白凝血酶)中凝血酶的完整共振分配,并创建了详细的残基图,这些残基响应于每个相关的单个或多个连接事件而改变了环境,构象或动态状态。这些研究表明载脂蛋白凝血酶以高度动态的酶原样状态存在,并且依赖于连接来获得完全活性的构象。构象可塑性赋予凝血酶立即选择性和混杂的能力。

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