Computational Study on Identification of Potential Elephantiasis Inhibitors Against UDP-Galactopyranose Mutase (UGM)

Q4 Pharmacology, Toxicology and Pharmaceutics Current Enzyme Inhibition Pub Date : 2021-03-02 DOI:10.2174/1573408016666200831171943
Sangavi Pandiyan, Langeswaran Kulanthaivel
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引用次数: 6

Abstract

Lymphatic filariasis, regularly known as elephantiasis, is a dismissed tropical malady. A filarial parasite causes the disease when it is transmitted to humans through mosquitoes. The World Health Organization distinguished that this is one of the subsequent driving reasons for lasting and long haul inability. Inaccessibility of immunization and medication opposition of a large portion of the ebb and flow hostile to filarial drugs necessitate quest of novel medication that focuses on creating elective medications. UDP-galactopyranose mutase (UGM) is a flavoenzyme that catalyzes the change of UDP-galactopyranose mutase to UDP-galactofuranose, which is a focal response in galactofuranose biosynthesis. This UGM is fundamental for some pathogens however, it is missing in people, makes UGM a potential medication target. In the current investigation, UGM from the parasitic nematode Brugia malayi has been considered as an objective during in silico medicate planning of powerful filarial inhibitor. Here, we build up the homology model of UGM protein dependent on the gem structure of 4DSG. To break down the quality and unwavering quality of the created model, model approval was performed utilizing the SAVES server. Mixes from Specs, Enamine, and Maybridge databases were screened to recognize a potential ligand that could hinder the action of the UGM protein utilizing Glide HTVS and Glide XP. Because of the scoring boundaries, the best 6 hit mixes were chosen and exposed to ADME forecast utilizing QikProp module from Schrodinger. To check the security of docked buildings, an atomic element study was completed. The consequences of this examination give six novel lead mixes to building up an enemy of filarial medication focusing on the UGM protein.
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对UDP吡喃半乳糖突变酶(UGM)潜在象虫病抑制剂鉴定的计算研究
淋巴丝虫病,通常被称为象皮病,是一种被忽视的热带疾病。当丝状寄生虫通过蚊子传播给人类时,就会引起这种疾病。世界卫生组织指出,这是导致持久和长期残疾的原因之一。免疫接种的不可及性和对丝虫病药物的很大一部分的药物反对,需要寻求新的药物,重点是创造选择性药物。udp -半乳糖脲糖变化酶(UGM)是一种将udp -半乳糖脲糖变化酶转化为udp -半乳糖呋喃糖的黄酶,是半乳糖呋喃糖生物合成中的核心反应。这种UGM是某些病原体的基础,然而,它在人类中缺失,使UGM成为潜在的药物靶点。在目前的研究中,来自马来布鲁贾线虫的UGM被认为是强力丝虫抑制剂的硅药物计划中的一个目标。在此,我们建立了依赖于4dsg宝石结构的UGM蛋白同源性模型。为了分解所创建模型的质量和不可动摇的质量,使用SAVES服务器执行模型批准。利用GlideHTVS和Glide XP对Specs、Enamine和Maybridge数据库中的混合物进行筛选,以识别可能阻碍UGM蛋白作用的潜在配体。由于评分边界的限制,我们选择了最好的6个热门混音,并利用薛定谔的QikProp模块进行adme预测。为检验码头建筑物的安全性,进行了结构单元分析。这项研究的结果给出了六种新的铅混合物,以建立一种针对UGM蛋白的丝虫药物的敌人。
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来源期刊
Current Enzyme Inhibition
Current Enzyme Inhibition Pharmacology, Toxicology and Pharmaceutics-Drug Discovery
CiteScore
1.30
自引率
0.00%
发文量
30
期刊介绍: Current Enzyme Inhibition aims to publish all the latest and outstanding developments in enzyme inhibition studies with regards to the mechanisms of inhibitory processes of enzymes, recognition of active sites, and the discovery of agonists and antagonists, leading to the design and development of new drugs of significant therapeutic value. Each issue contains a series of timely, in-depth reviews written by leaders in the field, covering a range of enzymes that can be exploited for drug development. Current Enzyme Inhibition is an essential journal for every pharmaceutical and medicinal chemist who wishes to have up-to-date knowledge about each and every development in the study of enzyme inhibition.
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