首页> 外文期刊>Journal of Receptor, Ligand and Channel Research >In silico modeling of toluene binding site in the pore of voltage-gate sodium channel
【24h】

In silico modeling of toluene binding site in the pore of voltage-gate sodium channel

机译:电压门钠通道孔中甲苯结合位点的计算机模拟

获取原文
       

摘要

Abstract: Toluene is a commonly used organic solvent in commercial products and is sometimes abused as an inhalative hallucinogen, causing arrythmogenic toxicity. At a molecular level we investigated whether a hypothetical interaction model could be devised for the reported myo- and cardiotoxic effects of toluene. Three lines of computed evidence support our hypothesis on the interaction mechanism: (i) Toluene binds at the local anesthetic binding site (LABS), on the wild type (WT) but not on its F1579A mutation, confirming our experimental findings that it inhibits only the WT of skeletal muscle or cardiac isoforms (Nav 1.4 or 1.5). (ii) Typically for small alkylaryl moiety, multiple binding modes were detected during docking. Toluene is trapped in the tryptophane-rich area at the extracellular vestibule by hydrophobic interaction, mainly π–π stacking, or bound to the LABS with equal binding strength and number of solved poses, mostly by edge-to-face contacts. (iii) The computed loss of toluene binding at the LABS on the mutant model parallels clearly the observed loss of toluene effects on Nav 1.4. Moreover, we inspected the complete primary sequences with the omitted loops in the 3D models to identify the possible interacting amino acids among the 16% nonidentical ones, and thus confirmed the observed toxicity effects.
机译:摘要:甲苯是商业产品中常用的有机溶剂,有时被滥用为吸入性致幻剂,引起致致死性毒性。在分子水平上,我们研究了是否可以针对所报道的甲苯的心肌和心脏毒性效应设计一种假设的相互作用模型。三行计算的证据支持了我们关于相互作用机理的假设:(i)甲苯在野生型(WT)的局部麻醉结合位点(LABS)上结合,但在F1579A突变上不结合,证实了我们的实验发现,即甲苯仅能抑制骨骼肌或心脏亚型的WT(Nav 1.4或1.5)。 (ii)通常,对于小的烷基芳基部分,在对接过程中检测到多种结合模式。甲苯通过疏水作用(主要是π-π堆积)而被捕获在细胞外前庭的富色氨酸区域,或以相等的结合强度和已解决姿势的数量结合到LABS,主要是通过面对面的接触。 (iii)在突变模型上,LABS处甲苯结合的计算损失与观察到的对Nav 1.4的甲苯作用损失明显相似。此外,我们在3D模型中检查了带有省略环的完整一级序列,以识别16%不同氨基酸之间可能相互作用的氨基酸,从而证实了所观察到的毒性作用。

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