首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Investigation of the selectivity of one type of small-molecule inhibitor for three Na v channel isoforms based on the method of computer simulation
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Investigation of the selectivity of one type of small-molecule inhibitor for three Na v channel isoforms based on the method of computer simulation

机译:基于计算机仿真方法的三种Na V通道同种型一种类型小分子抑制剂的选择性研究

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Voltage-gated sodium (Na v ) channels play a pivotal role for the changes in membrane potential and belong to large membrane proteins that compose four voltage sensor domains (VSD14). In this study, we describe the binding mode and selectivity of one of the aryl sulfonamide sodium channel inhibitors, PF-04856264, for the VSD4s in Na v 1.4, Na v 1.5 and Na v 1.7, respectively, through molecular dynamics simulation and enhanced post-dynamics analyses. Our results show that there are three binding site regions (BSR13) in the combination of the ligand and receptors, of which BSR1 and BSR3 contribute to the selectivity and affinity of the ligand to the receptor. Whats more, the 39th residue (Y39 in VSD4 hNav1.4 / VSD4 hNav1.7 and A39 in VSD4 hNav1.5 ) and N42 in BSR1, the 84th residue (L84 in VSD4 hNav1.4 , T84 in VSD4 hNav1.5 , and M84 in VSD4 hNav1.7 ) in BSR2 and the conserved positive charged residues in BSR3 have major contributions to the interaction between the ligand and receptor. Further analysis reveals that if the 39th residue has a benzene ring structure, the connection of BSR1 and the ligand would be much stronger through ?stacking interaction. On the other hand, the strength and number of the hydrogen bonds formed by the ligand and the conserved arginines on S4 determine the contribution of BSR3 to the total free binding energy. We anticipate this study pave the way for the design of more effective and safe treatment for pain that selectively target Na v 1.7. ?2018, ?2018 Informa UK Limited, trading as Taylor & Francis Group.
机译:电压门控钠(NA V)通道为膜电位的变化发挥枢轴作用,属于组成四个电压传感器域(VSD14)的大膜蛋白。在该研究中,通过分子动力学模拟和增强柱分别描述了芳基磺胺酰胺钠通道抑制剂,PF-04856264的芳基磺胺酰胺钠通道抑制剂,PF-04856264,VSD4S的结合模式和选择性 - 动力学分析。我们的结果表明,配体和受体组合有三个结合位点(BSR13),其中BSR1和BSR3有助于配体对受体的选择性和亲和力。更重要的是,第39次残基(VSD4 HNAV1.4 / VSD4 HNAV1.7和A39中的Y39,在VSD4 HNAV1.5中的A39中,在BSR1中的N42,第84条残基(L84在VSD4 HNAV1.4中,VSD4 HNAV1.5中的T84,以及在BSR2中的VSD4 HNAV1.7中M84和BSR3中保守的正电荷残留物对配体和受体之间的相互作用具有重大贡献。进一步的分析表明,如果第39硫残基具有苯环结构,则BSR1和配体的连接通过?堆叠相互作用更强烈。另一方面,由配体形成的氢键的强度和数量和S4上的保守精氨酸确定了BSR3对总自由结合能的贡献。我们预计这项研究为设计性靶向NA v 1.7的疼痛更有效和安全的疼痛铺平了设计。 ?2018年,?2018年Informa Informa Limited,贸易为泰勒和弗朗西斯集团。

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