Molecular Docking, MM-GBSA, and Molecular Dynamics Approach: 5-MeO-DMT Analogues as Potential Antidepressants.

Q3 Veterinary
Archives of Razi Institute Pub Date : 2023-10-31 eCollection Date: 2023-10-01 DOI:10.22092/ARI.2023.78.5.1603
Rajagopal Kalirajan, Khare Rishabh, Jupudi Srikanth, Modi Niharika, Negi Preeya, Islam Rezaul
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引用次数: 0

Abstract

Since depression is a common mental illness affecting an estimated 5% of people worldwide, investigators are encouraged to develop effective antidepressants. According to the monoamine-deficiency hypothesis, the underlying pathophysiology of depression is a deficiency of some neurotransmitters (serotonin, norepinephrine, or dopamine) in the central nervous system. The neurotransmitter serotonin has drawn the most attention concerning depression. As per research, 5-methoxy-N, N-dimethyltryptamine (5-MeO-DMT) elevates inter-synaptic serotonin levels when administered as a single inhalation of vapor from dried toad secretion and leads to higher life satisfaction, convergent thinking, higher ratings of mindfulness, lower ratings of depression, and anxiety. Furthermore, although 5-MeO-DMT lowers stress biomarkers such as cortisol, it is a psychedelic with hallucinogenic effects. In the present study, analogues of 5-MeO-DMT are designed with the hope that they might have better therapeutic activity and lower psychedelic side effects. The current study aimed to look at 5-MeO-DMT analogues as possible antidepressants. We used 70,000 5-MeO-DMT analogues that were sketched using Marvin to conduct a High Throughput Virtual Screening method in hopes of finding potential 5-MeO-DMT analogues against the 5-Hydroxytryptamine 1A receptor (5-HT1AR; 7E2Y.pdb) as an agonist. The prediction of the analogue-protein interaction and the evaluation of the binding affinity is accomplished by employing molecular docking. The Glide XP docking data indicated that a total of 21 compounds had Glide gscores ranging from -11.41 to -6.53 kcal/mol. When compared to the standard 5-MeO-DMT with the binding affinity of -7.75 kcal/mol, 14 compounds showed better binding affinity. Furthermore, Molecular Mechanics -Generalised Born and Surface Area solvation (MM-GBSA) indicated a binding free energy range of -63.55 to -35.37 kcal/mol, and 18 compounds showed better binding free energy than standard 5-MeO-DMT (-41.42 kcal/mol). Through ligand binding interactions with Asp116, Phe361, Phe362, Ser190, Ser199, Val117, Trp358, Ala365, Pro369, Ile189, Tyr195, Ala203, Ile167, Tyr390, Cys120, Trp358, Val364, Ala365, and Leu368, these complexes were stabilized, according to the molecular dynamic simulation of 20453/7E2Y in 100ns.

分子对接、MM-GBSA 和分子动力学方法:作为潜在抗抑郁药的 5-MeO-DMT 类似物。
由于抑郁症是一种常见的精神疾病,据估计影响着全球 5%的人,因此鼓励研究人员开发有效的抗抑郁药物。根据单胺缺乏假说,抑郁症的病理生理学基础是中枢神经系统中某些神经递质(血清素、去甲肾上腺素或多巴胺)的缺乏。关于抑郁症,神经递质血清素最受关注。根据研究,5-甲氧基-N, N-二甲基色胺(5-MeO-DMT)可提高突触间血清素水平,只需吸入干蟾蜍分泌物的蒸汽,就能提高生活满意度、聚合思维、心智评价、抑郁和焦虑评价。此外,虽然 5-MeO-DMT 能降低皮质醇等压力生物标志物,但它是一种具有致幻作用的迷幻剂。本研究设计了 5-MeO-DMT 的类似物,希望它们具有更好的治疗活性和更低的迷幻副作用。目前的研究旨在探讨 5-MeO-DMT 类似物作为抗抑郁药物的可能性。我们使用马文绘制的 70,000 个 5-MeO-DMT 类似物进行了高通量虚拟筛选,希望找到潜在的 5-MeO-DMT 类似物作为 5-Hydroxytryptamine 1A 受体(5-HT1AR;7E2Y.pdb)的激动剂。模拟物与蛋白质相互作用的预测和结合亲和力的评估是通过分子对接完成的。Glide XP 的对接数据表明,共有 21 种化合物的 Glide gscores 在 -11.41 至 -6.53 kcal/mol 之间。与结合亲和力为 -7.75 kcal/mol 的标准 5-MeO-DMT 相比,14 种化合物显示出更好的结合亲和力。此外,分子力学-广义玻恩和表面积溶解(MM-GBSA)表明,结合自由能范围为-63.55 至-35.37 kcal/mol,18 种化合物的结合自由能优于标准的 5-MeO-DMT(-41.42 kcal/mol)。通过与 Asp116、Phe361、Phe362、Ser190、Ser199、Val117、Trp358、Ala365、Pro369、Ile189、Tyr195、Ala203、Ile167、Tyr390、Cys120、Trp358、Val364、Ala365 和 Leu368 的配体结合相互作用,根据 100ns 内 20453/7E2Y 的分子动力学模拟,这些复合物得到了稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of Razi Institute
Archives of Razi Institute Veterinary-Veterinary (all)
CiteScore
1.50
自引率
0.00%
发文量
108
审稿时长
12 weeks
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