首页> 外文期刊>Journal of Computer-Aided Molecular Design >Activity prediction of substrates in NADH-dependent carbonyl reductase by docking requires catalytic constraints and charge parameterization of catalytic zinc environment
【24h】

Activity prediction of substrates in NADH-dependent carbonyl reductase by docking requires catalytic constraints and charge parameterization of catalytic zinc environment

机译:通过对接预测NADH依赖性羰基还原酶中底物的活性需要催化约束和催化锌环境的电荷参数化

获取原文
获取原文并翻译 | 示例
           

摘要

Molecular docking of substrates is more challenging compared to inhibitors as the reaction mechanism has to be considered. This becomes more pronounced for zinc-dependent enzymes since the coordination state of the catalytic zinc ion is of greater importance. In order to develop a predictive substrate docking protocol, we have performed molecular docking studies of diketone substrates using the catalytic state of carbonyl reductase 2 from Candida parapsilosis (CPCR2). Different docking protocols using two docking methods (AutoDock Vina and AutoDock4.2) with two different sets of atomic charges (AM1-BCC and HF-RESP) for catalytic zinc environment and substrates as well as two sets of vdW parameters for zinc ion were examined. We have selected the catalytic binding pose of each substrate by applying mechanism based distance criteria. To compare the performance of the docking protocols, the correlation plots for the binding energies of these catalytic poses were obtained against experimental V-max values of the 11 diketone substrates for CPCR2. The best correlation of 0.73 was achieved with AutoDock4.2 while treating catalytic zinc ion in optimized non-bonded (NBopt) state with +1.01 charge on the zinc ion, compared to 0.36 in non-bonded (+2.00 charge on the zinc ion) state. These results indicate the importance of catalytic constraints and charge parameterization of catalytic zinc environment for the prediction of substrate activity in zinc-dependent enzymes by molecular docking. The developed predictive docking protocol described here is in principle generally applicable for the efficient in silico substrate spectra characterization of zinc-dependent ADH.
机译:与抑制剂相比,底物的分子对接更具挑战性,因为必须考虑反应机理。对于锌依赖性酶而言,这变得更加明显,因为催化锌离子的配位状态更为重要。为了开发可预测的底物对接方案,我们已经使用副产念珠菌(CPCR2)的羰基还原酶2的催化状态对二酮底物进行了分子对接研究。使用两种对接方法(AutoDock Vina和AutoDock4.2)对催化锌环境和底物使用两组不同原子电荷(AM1-BCC和HF-RESP)的不同对接规程进行了检查,并对锌离子使用了两组vdW参数。我们通过应用基于机理的距离标准选择了每种底物的催化结合姿势。为了比较对接方案的性能,获得了这些催化姿势的结合能与CPCR2的11种二酮底物的实验V-max值的相关图。使用AutoDock4.2可以实现0.73的最佳相关性,而在优化的非键合(NBopt)状态下处理催化锌离子时,锌离子上带+1.01电荷,而非键合时为0.36(锌离子上带+2.00电荷)州。这些结果表明催化限制和催化锌环境的电荷参数化对于通过分子对接预测锌依赖性酶中底物活性的重要性。原则上,此处描述的已开发的预测对接方案原则上通常适用于锌依赖性ADH的高效计算机硅底物光谱表征。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号