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Computational protein design and protein-ligand interaction studies for the improvement of organophosphorus degrading potential of Deinococcus radiodurans

机译:计算蛋白质设计和蛋白质 - 配体相互作用研究,用于改善脱碘孢菌素的有机磷降解潜力

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The organophosphorus hydrolase enzyme is involved in the catalyzing reaction that involve hydrolysis of organophosphate toxic compounds. An enzyme from Deinococcus radiodurans reported as homologous to phosphotriesterase and show activity against organophosphate. In the past activity of this enzyme is low and efforts made to improve the activity by experimental mutation study. However only very few organophosphates tested against very few catalytic site mutations. In order to improve the catalytic power of the organophosphorus hydrolase enzyme, we carried out systematic functional hotspot based protein engineering strategy. The mutants tested against 46 know organophosphate compounds using molecular docking study. Finally, we carried out an extensive molecular docking study to predict the binding of 46 organophosphate compounds to wild-type protein and mutant organophosphorus hydrolase enzyme. At the end we are able to improve the degrading potential of organophosphorus hydrolase enzyme against organophosphate toxic compounds. This preliminary study and the outcome would be useful guide for the experimental scientist involved in the bioremediation of toxic organophosphate compounds. (C) 2018 Elsevier Inc. All rights reserved.
机译:有机磷水解酶酶参与涉及有机磷毒性化合物的水解的催化反应。来自Deinococcus radiodurans的酶报告为对Phosphotriesterase的同源物,表现出对有机磷酸酯的活性。在过去的活性中,这种酶的较低,努力通过实验突变研究改善活性。然而,仅对极少的催化位点突变测试的很少有机磷酸酯。为了提高有机磷水解酶的催化力,我们进行了系统功能性热点的蛋白质工程策略。使用分子对接研究,对46的突变体认识有机磷酸酯化合物。最后,我们进行了广泛的分子对接研究,以预测46个有机磷酸酯化合物与野生型蛋白质和突变有机磷磷水解酶的结合。最后,我们能够改善有机磷水解酶对有机磷毒性化合物的降解潜力。该初步研究和结果将是有毒有机磷酸盐化合物生物修复的实验科学家的有用指南。 (c)2018年Elsevier Inc.保留所有权利。

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