Structural analysis and prediction of potent bioactive molecule for eNOS protein through molecular docking.

In Silico Pharmacology Pub Date : 2021-08-05 eCollection Date: 2021-01-01 DOI:10.1007/s40203-021-00106-w
Pallavi S Kanthe, Bheemshetty S Patil, Kusal K Das, Prachi P Parvatikar
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引用次数: 1

Abstract

Reactive oxygen species by uncoupled eNOS is linked to endothelial dysfunction. Ellagic acid (EA), a polyphenol possesses numerous biological activities including radical scavenging. whether EA exerts a vasculo-protective effect via antioxidant mechanisms in blood vessels remains unknown. Molecular docking provides an initial model of protein and molecular interactions in various physiological and/or pathological functions. To identify a eNOS modulatory biomolecule through molecular docking as possible vascular protective agent. On the basis of binding affinities and other physicochemical features, a molecular docking-based approach was used to classify and evaluate eNOS binding micronutrients found in natural sources, Lipinski's rule was used taking into account their adsorption, delivery, metabolism, and excretion (ADME). An insilico approach focused on the ligand-protein interaction technique to determine the therapeutic potential of certain phytochemical-based drugs for the vascular remodelling.20 bioactive molecules were screened, docking analysis on human eNOS proteins was performed. The best poses for target protein was established based on binding energy and inhibition constant. EA and caffeine acid are the strongest candidates for eNOS protein functional norms. This provides a novel insight into the interaction properties of known human eNOS protein with EA and used as a therapeutic agent in various pathologies. Predicting interaction of ellagic acid with eNOS protein by molecular docking in endothelial dysfunction.

Abstract Image

基于分子对接的eNOS蛋白活性分子结构分析与预测。
非偶联eNOS产生的活性氧与内皮功能障碍有关。鞣花酸是一种多酚,具有清除自由基等多种生物活性。EA是否通过血管中的抗氧化机制发挥血管保护作用尚不清楚。分子对接提供了蛋白质和分子在各种生理和/或病理功能中的相互作用的初始模型。通过分子对接鉴定一种可能作为血管保护剂的eNOS调节生物分子。基于结合亲和性和其他物理化学特征,采用基于分子对接的方法对天然来源的eNOS结合微量营养素进行分类和评价,并考虑其吸附、传递、代谢和排泄(ADME),采用Lipinski规则。一种计算机方法聚焦于配体-蛋白质相互作用技术,以确定某些植物化学药物对血管重构的治疗潜力。筛选出20个生物活性分子,与人eNOS蛋白进行对接分析。根据结合能和抑制常数确定目标蛋白的最佳位姿。EA和咖啡因酸是eNOS蛋白功能规范的最强候选。这为已知的人类eNOS蛋白与EA的相互作用特性提供了新的见解,并被用作各种病理的治疗剂。通过分子对接预测鞣花酸与eNOS蛋白在内皮功能障碍中的相互作用。
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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