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In-Silico Identification of inhibitors for Controlling Rice Blast

机译:控制稻瘟病抑制剂的硅鉴定

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Rice blast is one of the most important disease of the rice worldwide, caused by a fungus Magnaporthe grisea, a plant pathogen. This fungus produces a specialized structure, called appressorium infecting the plant. Melanin is a necessary for appressorium functioning in M. grisea. Two enzymes of melanin pathway, THNR and SDH, are used as drug targets against rice blast to inhibit the melanin pathway which is responsible for appressorium formation. In this study, we have found various compounds from the ZINC database against the proteins THNR and SDH of Magnaporthe grisea. Our analysis have reported 1000 Lipinski compliant hits which on docking, identified structurally novel ligands that will make similar interactions with known targets or non similar interactions with other binding site parts. We identified four novel compounds, viz. ZINC47622465, ZINC70932033, ZINC09011974 and ZINC66511493 with idock score of -12.594, -12.546, and -12.109 & -12.421 kcal/mol, respectively. This study aims to identify new inhibitors which can be used as potential anti-fungal compounds for controlling rice blast.
机译:稻瘟是全球大米最重要的疾病之一,由植物病原体是真菌甲基北甘蓝族。这种真菌产生了一种叫做植物的专用结构,称为植物。黑色素是M.Grisea中孕产量的必要性。黑色素途径,THNR和SDH的两种酶被用作针对稻瘟病毒药的药物靶标,以抑制对黑色素途径负责沉淀的形成。在这项研究中,我们已经发现了来自锌数据库的各种化合物对抗Magnaporthe Grisea的蛋白质THNR和SDH。我们的分析报告了在对接的符合款项符合的令人满意的命中,鉴定了结构性新的配体,其将与已知靶或与其他结合位点部分的未相似的相互作用进行类似的相互作用。我们鉴定了四种新化合物,viz。 ZINC47622465,ZINC7762033,锌09011974和锌66511493分别为-12.594,-12.546和-12.109&-12.421 kcal / mol的IDock评分。本研究旨在鉴定新的抑制剂,可用作控制稻瘟病的潜在抗真菌化合物。

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