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首页> 外文期刊>Pharmacognosy magazine >Pharmacophore mapping based inhibitor selection and molecular interaction studies for identification of potential drugs on calcium activated potassium channel blockers, tamulotoxin
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Pharmacophore mapping based inhibitor selection and molecular interaction studies for identification of potential drugs on calcium activated potassium channel blockers, tamulotoxin

机译:基于药理学作图的抑制剂选择和分子相互作用研究,以鉴定钙激活钾通道阻滞剂,他莫毒素的潜在药物

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Background:Tamulotoxin (TmTx) from Buthus tamulus was found to be a highly venomous toxin which accelerates the neurotransmitter release that directly affects the cardiovascular tissues and the respiratory system leading to death. TmTx from red Indian scorpion is a crucial inhibitor for Ca2+ activated K+ channel in humans.Objective:The study is aimed at the identification of potential inhibitors of TmTx through pharmacophore based inhibitor screening and understanding the molecular level interactions.Materials and Method:The potential inhibitors for TmTx were identified using pharmacophore model based descriptor information present in existing drugs with the analysis of pharmacokinetic properties. The compounds with good ADMET (Absorption, Distribution, Metabolism, Excretion and Toxicity) descriptors were subjected to molecular interaction studies. The stability of bound toxin-inhibitor complex was studied using molecular dynamics simulation over a period of one nanosecond.Results:From a dataset of 3406 compounds, few compounds were selected as potential inhibitors based on the generated best pharmacophore models, pharmacokinetic analysis, molecular docking and molecular dynamics studies.Conclusion:In conclusion, two compounds containing better inhibition properties against TmTx are suggested to be better lead molecules for drug development in future and this study will help us to explore more inhibitors from natural origin against tamulotoxin.
机译:背景:Buthus tamulus的Tamulotoxin(TmTx)是一种剧毒毒素,可加速神经递质的释放,直接影响心血管组织和呼吸系统,导致死亡。来自印度洋红蝎子的TmTx是人类体内Ca2 +激活的K +通道的关键抑制剂。目的:该研究旨在通过基于药效基团的抑制剂筛选并了解分子水平的相互作用,识别TmTx的潜在抑制剂。使用现有药中存在的基于药效团模型的描述符信息对TmTx进行鉴定,并进行药代动力学特性分析。具有良好ADMET(吸收,分布,代谢,排泄和毒性)特征的化合物进行了分子相互作用研究。通过分子动力学模拟研究了结合的毒素-抑制剂复合物的稳定性在一纳秒内。结果:根据生成的最佳药效团模型,药代动力学分析,分子对接,从3406种化合物的数据集中选择了几种化合物作为潜在抑制剂结论:总而言之,两种对TmTx具有更好抑制特性的化合物被认为是未来药物开发的更好的先导分子,这项研究将帮助我们探索更多天然来源的他莫毒素抑制剂。

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