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Comparative modeling of DszC an enzyme in biodesulfurization and performing in silico point mutation for increasing tendency to oil

机译:比较模型DszC(一种生物脱硫中的酶)的模拟模型并进行了计算机积分突变以增加机油趋势

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摘要

Desulfurization protein named DszC from Rhodococcus erythropolis is the key enzyme for biodesulforization of dibenzothiophene (DBT) in 4S pathway, which is a pathway with four enzymes. DszC enzyme biodesulfurizes DBT and its derivatives in oil components and biphasic systems. It functions well at the oil- water interface. In this study point mutation performed in DszC enzyme regarding to increase protein hydrophobicity and stability for application in immobilized form. 3D model of DszC predicted using Phyre2, SAM-T08 and M4t servers. I-Mutant 2 server used to determine potential spots for point mutation, and Molegro Virtual Docker (MVD) used for performing point mutation on 3D model. Hydrophobicity plots generated by Bioedit version 7.0.8.0 in Kyte-Doolittle scale indicated that protein hydrophobicity is increased after mutation. Also protein stability increased 26.11 units in scale of DDC2.
机译:来自红球菌的脱硫蛋白DszC是在4S途径中对二苯并噻吩(DBT)进行生物脱硫的关键酶,该途径是由4种酶组成的途径。 DszC酶可将DBT及其衍生物在石油组分和双相系统中进行生物脱硫。它在油水界面上的功能很好。在这项研究中,在DszC酶中进行的点突变涉及增加蛋白质疏水性和以固定形式应用的稳定性。使用Phyre2,SAM-T08和M4t服务器预测的DszC 3D模型。 I-Mutant 2服务器用于确定潜在的点突变,而Molegro虚拟Docker(MVD)用于在3D模型上执行点突变。 Bioedit 7.0.8.0版以Kyte-Doolittle规模生成的疏水图表明,突变后蛋白质疏水性增加。蛋白质的稳定性也增加了DDC2的26.11个单位。

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