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Acetohydroxyacid Synthase (AHAS) Inhibitor-Based Commercial Sulfonylurea Herbicides as Glutathione Reductase Inhibitors: in Vitro and in Silico Studies

机译:Acetohydroxyacid Synthase (AHAS) Inhibitor-Based Commercial Sulfonylurea Herbicides as Glutathione Reductase Inhibitors: in Vitro and in Silico Studies

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摘要

In this study, in vitro inhibitory effect of AHAS inhibiting-based commercial sulfonylurea herbicides on human GR and S. cerevisiae GR was determined by electrochemical method. Our findings, the first report in literature, show that the four commercial herbicides were found to be the inhibitors in the range of 4.90-9.75 μM for ScGR, and in the range of 8.54-18.84 μM for hGR. Global reactivity descriptors (energy gaps, electronegativity, hardness and electrophilicity index) of the herbicides were calculated by DFT/B3LYP/6-31G(d,p) method in gas phase. The electrochemical behavior of the herbicides was studied by cyclic voltammetry. Single-electron half-wave reduc- tion potentials and global reactivity descriptors were correlated with the IC_(50) values of the herbicides. Molecular docking analysis using Schrodinger Suite was applied to examine the interaction between the herbicides and human GR (PDB ID:1XAN and 2GH5), S. cerevisiae GR (PDB ID:2HQM), P. falciparum GR (PDB ID:1ONF), C. albicans AHAS (PDB ID:6DEL) and ScAHAS (PDB ID: 5FEM. Based on the docking results, it can be predicted that (a) herbicides have similar binding potential to two different binding sites of hGRs, (b) herbicides may have antimalarial potential against P. falciparum (c) herbicides may have antifungal potential against C. albicans.
机译:在这项研究中,啊哈的体外抑制作用inhibiting-based商业磺酰脲类除草剂对人类GR和酿酒酵母GR由电化学方法。发现,第一个报告文学、表演四个商业除草剂被发现的抑制剂的范围4.90 - -9.75μMScGR,在8.54 - -18.84μM的范围hGR。电负性、硬度和亲电性除草剂计算的指数)DFT / B3LYP /我在气相(d, p)方法。除草剂的电化学行为研究了循环伏安法。半波增加,潜力和全球反应性相关的描述符除草剂的IC_(50)值。使用薛定谔对接分析套件应用于检查之间的交互除草剂和人类GR(黄嘌呤和2 gh5 PDB ID: 1),(onf PDB ID: 1),白念珠菌啊(PDB ID: 6 del)ScAHAS (PDB ID: 5有限元法。结果,它可以预测,(a)除草剂有类似的潜在绑定到两个不同的吗结合位点的hGRs, (b)除草剂抗疟潜在对恶性疟原虫(c)除草剂可能抗真菌潜在的反对白念珠菌。

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  • 来源
    《Chemistry Select》 |2022年第38期|共8页
  • 作者单位

    Istanbul University Pharmacy Faculty, Analytic Chemistry, 34116, Beyazit Istanbul, Turkey;

    Department of Chemistry Engineering, Faculty of Engineering University of Kirsehir Ahi Evran, Kirsehir, 40100, Turkey;

    Gazi University, Science Faculty, Chemistry Department, 06500, Ankara, Turkey;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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