首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Stereoselection in the diels-alderase ribozyme: A molecular dynamics study
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Stereoselection in the diels-alderase ribozyme: A molecular dynamics study

机译:Diels-醛糖酶核酶中的立体定向:分子动力学研究。

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The Diels-Alderase ribozyme is an in vitro-evolved ribonucleic acid enzyme that catalyzes a [4 + 2] cycloaddition reaction between an anthracene diene and a maleimide dienophile. The ribozyme can in principle be used to selectively synthesize only one product enantiomer, depending on which of the two entrances to the catalytic pocket, "front" or "back", the substrate is permitted to use. Here, we investigate stereoselection and substrate recognition in the ribozyme by means of multiple molecular dynamics simulations, performed on each of the two substrates individually in the pocket, on the reactant state, and on the product state. The results are consistent with a binding mechanism in which the maleimide likely binds first followed by the anthracene, which enters preferentially through the front door. The free energy profiles for anthracene binding indicate that the pre-(R,R)-enantiomer conformation is slightly preferred, in agreement with the experimentally observed small enantiomeric excess of the (R,R)-enantiomer of the product. The reactant state is stabilized by the simultaneous presence of both substrates bound to their binding sites in the hydrophobic pocket as well as by stacking interactions between them.
机译:Diels-Alderase核酶是一种体外进化的核糖核酸酶,可催化蒽二烯和马来酰亚胺二烯亲和物之间的[4 + 2]环加成反应。核酶原则上可用于选择性地仅合成一种产物对映异构体,这取决于允许使用底物的催化口袋“前”或“后”两个入口中的哪一个。在这里,我们通过在口袋中,反应物状态和产物状态分别对两种底物分别进行的多重分子动力学模拟研究了核酶中的立体选择和底物识别。结果与结合机制一致,其中马来酰亚胺可能首先结合,然后是蒽,后者优先通过前门进入。蒽结合的自由能曲线表明,略优选前-(R,R)-对映体构象,这与实验观察到的产物(R,R)-对映体的少量对映体过量相一致。通过在疏水袋中同时存在结合到其结合位点的两种底物以及它们之间的堆叠相互作用,可以稳定反应物的状态。

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