Chemo-informatics guided study of natural inhibitors targeting rho GTPase: a lead for treatment of glaucoma.

In Silico Pharmacology Pub Date : 2021-01-03 eCollection Date: 2021-01-01 DOI:10.1007/s40203-020-00061-y
Sumit Kumar Rai, Rajesh Kumar Pathak, Dev Bukhsh Singh, Arun Bhatt, Mamta Baunthiyal
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引用次数: 3

Abstract

Glaucoma, the most perilous disease leading to blindness is a result of optical neuropathy. Accumulation of aqueous humor in the posterior chamber due to a large difference in the rate of formation and its drainage in the anterior chamber causes an increase in intraocular pressure (IOP) leading to damage of nerve cells. A literature survey has revealed that inhibition of the Rho guanosine triphosphatases (rho GTPase) pathway by specific inhibitors leads to the relaxation of contractile cells involved in the aqueous outflow pathway. Relaxation of the strained contractile cells results in increased outflow thereby releasing IOP. In the present study molecular docking has been used to screen twenty seven bioactive (17 natural compounds and 10 conventional drugs) compounds that may play a significant role in relaxing contractile cells by inhibiting rho-GTPase protein. Docking results showed that among all-natural bioactive compounds Cyanidin and Delphinidine have a good binding affinity (- 8.4 kcal/mol) than the top screened conventional drug molecule Mitomycin, (- 6.3 kcal/mol) when docked with rho-GTPase protein. Cyanidin and Delphinidin belong to anthocyanidin, a glycoside form of anthocyanins from Vaccinium myrtillus L. and Punica granatum. The resembling potential of Cyanidin and Delphinidin concerning the drug Mitomycin was confirmed through simulation analysis. Molecular dynamics study (MDS) for 100 ns, showed that the rho GTPase-Delphinidine complex structure was energetically more stable than rho GTPase-Cyaniding complex in comparison to rho GTPase-Mitomycin complex. The comparative study of both the selected hits (Cyanidin and Delphinidin) was assessed by RMSD, RMSF, Rg, SASA, H-bond, PCA MM/PBSA analysis. The analysis revealed that Delphinidine is more potent to inhibit the rho GTPase as compare to Cyaniding and available conventional drugs in terms of stability and binding free energy. Based on the results, these molecules have good pharmacokinetic and pharmacodynamics properties and will prove to be a promising lead compound as a future drug for Glaucoma.

以化学信息学为指导的天然rho GTPase抑制剂研究:青光眼治疗的先导。
青光眼是导致失明的最危险的疾病,是视神经病变的结果。由于房水形成速度和房水在前房引流速度的巨大差异,房水在后房积聚,导致眼内压(IOP)升高,导致神经细胞损伤。一项文献调查显示,特定抑制剂抑制Rho鸟苷三磷酸酶(Rho GTPase)途径可导致参与水流出途径的收缩细胞松弛。紧张的收缩细胞松弛导致流出量增加,从而释放IOP。本研究利用分子对接技术筛选了27种生物活性化合物(17种天然化合物和10种常规药物),这些化合物可能通过抑制rho-GTPase蛋白而在松弛收缩细胞中发挥重要作用。对接结果表明,在天然生物活性化合物中,与rho-GTPase蛋白对接时,Cyanidin和Delphinidine具有较好的结合亲和力(- 8.4 kcal/mol),高于筛选出的常规药物分子Mitomycin (- 6.3 kcal/mol)。花青素和飞燕素属于花青素,花青素是桃金娘和石榴花中的花青素的一种苷形式。通过模拟分析,证实了花青素和飞燕素对丝裂霉素的相似潜力。100 ns的分子动力学研究(MDS)表明,GTPase-Delphinidine配合物的结构比gtpase - cyanding配合物的结构更稳定。通过RMSD、RMSF、Rg、SASA、h -键、PCA MM/PBSA分析,对选定的两种hit (Cyanidin和Delphinidin)进行比较研究。结果表明,在稳定性和结合自由能方面,与氰化和现有的常规药物相比,德尔菲尼定对rho GTPase的抑制作用更强。基于这些结果,这些分子具有良好的药代动力学和药效学特性,将被证明是未来治疗青光眼的有前途的先导化合物。
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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