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A study of Bos taurus muscle specific enolase; biochemical characterization, homology modelling and investigation of molecular interaction using molecular docking and dynamics simulations

机译:Bos Taurus肌肉特异性烯醇酶的研究; 利用分子对接和动力学模拟的生化表征,同源性建模与分子相互作用的研究

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摘要

Tropical theileriosis caused by Theileria annulata obligate parasite that infect ruminant animals, including Bos taurus. The disease results massive economic losses in livestock production worldwide. Here we describe cloning, expression and both biochemical and structural characterization of beta enolase from Bos taurus in vitro and in silico. The interconversion of 2-phosphoglycerate to phosphoenolpyruvate was catalyzed by enolase is a metalloenzyme in glycolytic pathway and gluconeogenesis. Enolase from Bos taurus was cloned, expressed and the protein was purified at 95% purity using cobalt column by affinity chromatography. The optimum enzymatic activity was calculated at pH 6.5. For the first time in the literature, the kinetic parameters of the enzyme, Vmax and Km, were measured as 0.1141 mM/min and 0.514 mM, respectively. Besides, Bos taurus enolase 3-dimensional structure was built by homology modelling to be used in silico analyses. The interactions of the enzyme-substrate complex were elucidated by molecular dynamics simulations for 100 ns. These interactions were found to be the same as experimentally determined interactions in yeast. These results would enable further structure based drug design studies with the biochemical characterization of the host organism Bos taurus enolase enzyme in vitro and the elucidation of behavior of enzyme-substrate complex in silico. (C) 2018 Elsevier B.V. All rights reserved.
机译:由Heria Annulata引起的热带寄生虫寄生虫感染反刍动物,包括Bos Taurus。全球畜牧业生产疾病造成巨大的经济损失。在这里,我们描述了在体外和硅藻土中从Bos Taurusβ烯醇酶的克隆,表达和生物化学和结构表征。通过烯醇酶催化2-磷酸糖酮与磷酸丙酮酸的互连是糖苷酶中的金属酶,并且是糖型途径和葡糖生成的金属酶。克隆来自Bos Taurus的烯醇酶,表达,并通过亲和色谱法使用钴柱以95%纯度纯化蛋白质。在pH6.5下计算最佳酶活性。在文献中首次,测量酶,Vmax和Km的动力学参数分别为0.1141mm / min和0.514mm。此外,Bos Taurus Enolase 3维结构是由同源模拟建造的,以用于硅分析。通过30 ns的分子动力学模拟阐明了酶底物复合物的相互作用。发现这些相互作用与酵母中的实验确定的相互作用相同。这些结果将能够在体外具有进一步的基于结构的药物设计研究Bos Taurus enolase酶的生物化学表征,并阐明酶 - 底物络合物在硅中的行为。 (c)2018年elestvier b.v.保留所有权利。

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