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新型基于石杉碱甲的N-甲基-D-天冬氨酸拮抗剂:来自分子对接、药物代谢动力学/药物处置及分子动力学模拟研究的见解

Novel huperzine A based NMDA antagonists: insights from molecular docking, ADME/T and molecular dynamics simulation studies.

作者信息

Sigalapalli Dilep Kumar, Rangaswamy Raghu, Tangellamudi Neelima D

机构信息

Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research (NIPER) Hyderabad 500037 India

Department of Bioinformatics, Alagappa University Karaikudi - 630 003 Tamil Nadu India.

出版信息

RSC Adv. 2020 Jul 6;10(43):25446-25455. doi: 10.1039/d0ra00722f. eCollection 2020 Jul 3.

Abstract

Huperzine A (HupA) is an alkaloidal natural product and drug isolated from Chinese herb , which is a potent selective anticholinesterase inhibitor. HupA has symptomatic, cognitive-enhancing and protective effect on neurons against amyloid beta-induced oxidative injury and antagonizing -methyl-d-aspartate receptors by blocking the ion channels. The present study aimed to identify the docking, ADME/T and molecular dynamics simulation parameters of a library of 40 analogues which can correlate the binding affinity, conformational stability and selectivity of the ligands towards NMDA receptor through approach. Glide molecular docking analysis was performed for the designed analogues to understand the binding mode and interactions. MD simulations were performed to explain the conformational stability and natural dynamics of the interaction in physiological environmental condition of protein-ligand complex affording a better understanding of chemical-scale interactions between HupA and its analogues with NMDA channel that could potentially benefit the development of new drugs for neurodegenerative diseases involving NMDA receptors.

摘要

石杉碱甲(HupA)是一种从中国草药中分离出的生物碱类天然产物和药物,它是一种有效的选择性抗胆碱酯酶抑制剂。石杉碱甲对神经元具有对症、认知增强和保护作用,可抵抗淀粉样β蛋白诱导的氧化损伤,并通过阻断离子通道拮抗N-甲基-D-天冬氨酸受体。本研究旨在通过某种方法确定40种类似物库的对接、ADME/T和分子动力学模拟参数,这些参数可以关联配体对NMDA受体的结合亲和力、构象稳定性和选择性。对设计的类似物进行了Glide分子对接分析,以了解其结合模式和相互作用。进行了分子动力学模拟,以解释蛋白质-配体复合物在生理环境条件下相互作用的构象稳定性和自然动力学,从而更好地理解石杉碱甲及其类似物与NMDA通道之间的化学尺度相互作用,这可能有助于开发涉及NMDA受体的神经退行性疾病的新药。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f91/9055280/529d808b2e57/d0ra00722f-s1.jpg

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