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首页> 外文期刊>Brazilian Archives of Biology and Technology >In silico molecular modeling and docking studies on the leishmanial tryparedoxin peroxidase.
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In silico molecular modeling and docking studies on the leishmanial tryparedoxin peroxidase.

机译:在计算机上对利什曼原虫类胰蛋白酶过氧化物酶进行分子建模和对接研究。

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摘要

Leishmaniasis is one of the most common form of neglected parasitic disease that affects about 350 million people worldwide. Leishmanias have a trypanothione mediated hydroperoxide metabolism to eliminate endogenous or exogenous oxidative agents. Both of 2-Cys peroxiredoxin (Prx) and glutathione peroxidase type tryparedoxin peroxidase (Px) are the terminal enzymes in the trypanothione dependent detoxification system. Therefore absence of trypanothione redox system in mammals and the sensitivity of trypanosomatids against oxidative stress, enzymes of this pathway are drug targets candidates. In this study, 3D structure of tryparedoxin peroxidase (2-Cys peroxiredoxin type) from Leishmania donovani (LdTXNPx) was described by homology modeling method based on the template of tryparedoxin peroxidase from Crithidia fasciculata and selected compounds were docked to the active site pocket. The quality of the 3D structure of the model was confirmed by various web based validation programs. When compared secondary and tertiary structure of the model, it showed a typical thioredoxin fold containing a central beta-sheet and three alpha-helices. Docking study showed that the selected compound 2 (CID 16073813) interacted with the active site amino acids and binding energy was -118.675 kcal/mol.
机译:利什曼病是一种被忽视的寄生虫病,是最常见的形式之一,全世界有3.5亿人受到这种疾病的影响。利什曼原虫具有锥虫硫磷介导的氢过氧化物代谢,以消除内源性或外源性氧化剂。 2-Cys过氧化物酶(Prx)和谷胱甘肽过氧化物酶类型的胰蛋白酶过氧化物酶(Px)都是锥虫硫酮依赖性解毒系统中的末端酶。因此,在哺乳动物中缺乏锥虫硫醚氧化还原系统和锥虫病对氧化应激的敏感性,该途径的酶是候选药物。在这项研究中,利用同源性方法(Crisidia fasciculata的锥虫毒素过氧化物酶模板),通过同源建模方法描述了来自利什曼原虫(Leishmania donovani)(2-Cys peroxiredoxin type)的锥虫毒素过氧化物酶的3D结构,并将所选化合物对接至活性位点口袋。该模型的3D结构的质量已通过各种基于Web的验证程序得到了确认。当比较模型的二级和三级结构时,它显示出典型的硫氧还蛋白折叠,其中包含一个中央β-折叠和三个α-螺旋。对接研究表明,所选化合物2(CID 16073813)与活性位点氨基酸相互作用,结合能为-118.675 kcal / mol。

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