首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Toward Understanding Allosteric Activation of Thrombin: A Conjecture for Important Roles of Unbound Na+ Molecules around Thrombin
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Toward Understanding Allosteric Activation of Thrombin: A Conjecture for Important Roles of Unbound Na+ Molecules around Thrombin

机译:试图理解凝血酶的变构激活:关于凝血酶周围未结合的Na +分子的重要作用的猜想

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We shed light on important roles of unbound Na+ molecules in enzymatic activation of thrombin. Molecular mechanism of Na+-activation of thrombin has been discussed in the context of allostery. However, the recent challenge to redesign K+-activated thrombin revealed that the allosteric interaction is insufficient to explain the mechanism. Under these circumstances, we have examined the roles of unbound Na+ molecule in maximization of thrombin-substrate association reaction rate. We performed all-atomic molecular dynamics (MD) simulations of thrombin in the presence of three different cations; Li+, Na+, and Cs+. Although these cations are commonly observed in the vicinity of the S1-pocket of thrombin, smaller cations are distributed more densely and extensively than larger ones. This suggests the two observation rules: (i) thrombin surrounded by Na+ is at an advantage in the initial step of association reaction, namely, the formation of an encounter complex ensemble, and (ii) the presence of Na+ molecules does not necessarily have an advantage in the final step of association reaction, namely, the formation of the stereospecific complex. In conclusion, we propose a conjecture that unbound Na+ molecules also affect the maximization of rate constant of thrombin-substrate association reaction through optimally forming an encounter complex ensemble.
机译:我们阐明了未结合的Na +分子在凝血酶的酶促活化中的重要作用。已在变构背景下讨论了凝血酶Na +活化的分子机制。但是,重新设计K +活化凝血酶的最新挑战表明,变构相互作用不足以解释其机理。在这种情况下,我们研究了未结合的Na +分子在凝血酶-底物缔合反应速率最大化中的作用。我们在三种不同阳离子的存在下对凝血酶进行了全原子分子动力学(MD)模拟。 Li +,Na +和Cs +。尽管通常在凝血酶的S1口袋附近观察到这些阳离子,但较小的阳离子比较大的阳离子分布更密集和广泛。这表明了两个观察法则:(i)被Na +包围的凝血酶在缔合反应的初始阶段具有优势,即形成相遇复合体;(ii)Na +分子的存在不一定具有在缔合反应的最后步骤中具有优势,即立体特异性复合物的形成。总之,我们提出一个猜想,即未结合的Na +分子也会通过最佳地形成相遇复合体来影响凝血酶-底物缔合反应的速率常数的最大化。

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