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Targeting a Rate-Promoting Vibration with an AllostericMediator in Lactate Dehydrogenase

机译:以变​​构为目标来促进速率振动乳酸脱氢酶介体

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摘要

We present a new type of allosteric modulation in which a molecule bound outside the active site modifies the chemistry of an enzymatic reaction through rapid protein dynamics. As a test case for this type of allostery, we chose an enzyme with a well-characterized rate-promoting vibration, lactate dehydrogenase; identified a suitable small molecule for binding; and used transition path sampling to obtain ensembles of reactive trajectories. We found that the small molecule significantly affected the reaction by changing the position of the transition state and, through applying committor distribution analysis, showed that it removed the protein component from the reaction coordinate. The ability of a small-molecule to disrupt enzymatic reactions through alteration of subpicosecond protein motion opens the door for new experimental studies on protein motion coupled to enzymatic reactions and possibly the design of drugs to target these enzymes.
机译:我们提出了一种新型的变构调节,其中结合在活性位点之外的分子通过快速的蛋白质动力学来修饰酶促反应的化学反应。作为这类变构的测试案例,我们选择了一种具有良好的速率促进振动的酶,乳酸脱氢酶;确定了适合结合的小分子;并使用过渡路径采样来获得反应轨迹的集合。我们发现该小分子通过改变过渡态的位置显着影响了反应,并且通过应用提交者分布分析,表明该小分子从反应坐标中去除了蛋白质成分。小分子通过改变皮秒以下蛋白质运动来破坏酶促反应的能力为蛋白质运动与酶促反应以及可能针对这些酶的药物设计的新实验研究打开了大门。

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