Molecular dynamics studies on the arginine kinase protein of Aedes sollicitans: Against the natural chemical compound, Gedunin

P. Nijanthi, S. S, Balaji Munivelan
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引用次数: 3

Abstract

Plant extracts have, today, become an important additive in the food industry owing to the bioactive compounds present in them. They have antimicrobial and antioxidant activities which act as very good candidates to replace synthetic compounds. In this insilico study, we focus on Gedunin, a tetranortriterpenoid extracted from Azadirachta indica , the Indian neem tree, which inhibits the Arginine kinase present in Aedes sollicitans . The chemical structure of Gedunin was obtained from NCBI Pubchem chemical compound database for the purpose of drug docking. An automated drug docking server was used to analyse the binding interaction between Gedunin and arginine kinase protein. Gedunin directly interacts with the protein at various functional active sites. The results were analysed using molecular dynamic studies. In conclusion, we infer that natural products such as Gedunin can be effectively used to control havoc-causing species such as Aedes sollicitans. This has been proved using Insilico studies in our current research work
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鸢尾伊蚊精氨酸激酶蛋白对天然化合物皂荚素的分子动力学研究
如今,由于植物提取物中含有生物活性化合物,它已成为食品工业中重要的添加剂。它们具有抗菌和抗氧化活性,是替代合成化合物的很好的候选者。在这项计算机研究中,我们重点研究了苦楝素,一种从印度印楝树中提取的四萜类化合物,它能抑制伊蚊的精氨酸激酶。为进行药物对接,从NCBI Pubchem化合物数据库中获取根茎苷的化学结构。采用自动药物对接服务器分析了皂荚素与精氨酸激酶蛋白的结合相互作用。皂荚素直接与蛋白质的各种功能活性位点相互作用。结果用分子动力学研究进行了分析。综上所述,我们推断,天然产物如格登宁可以有效地控制伊蚊等造成严重破坏的物种。这已经在我们目前的研究工作中使用Insilico研究得到了证明
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