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首页> 外文期刊>International Journal of Chemical Kinetics >The Reaction Mechanism and Kinetics Data of Racemic Atenolol Kinetic Resolution via Enzymatic Transesterification Process Using Free Pseudomonas fluorescence Lipase
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The Reaction Mechanism and Kinetics Data of Racemic Atenolol Kinetic Resolution via Enzymatic Transesterification Process Using Free Pseudomonas fluorescence Lipase

机译:通过游离假单胞菌荧光脂肪酶通过酶促酯交换过程通过酶促酯交换过程的反应机制和动力学数据

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摘要

A thorough study on free-enzyme transesterification kinetic resolution of racemic atenolol in a batch system was investigated to gain knowledge for (S)-atenolol kinetics. Analyses of enzyme kinetics using Sigma-Plot 11 Enzyme Kinetics Module on the process are based-on Michaelis-Menten and Lineweaver-Burk plot, which give first-order reaction and ordered-sequential Bi-Bi mechanism, where V-max, KM-vinyl acetate, and KM-(S)-atenolol are 0.80 mM/h, 29.22 mM, and 25.42 mM, respectively. Further analyses on enzyme inhibitions find that both substrates inhibit the process where (S)-atenolol and vinyl acetate develop competitive inhibition and mixed inhibition, respectively. Association of (S)-atenolol with free enzyme to inhibit the enzyme is higher than reaction of active enzyme-substrate complex with vinyl acetate.
机译:研究了对批量系统中的外消旋亚替洛尔的自由酶酯交换动力学分辨率进行了彻底的研究,以获得对(S)-Tenolol动力学的知识。 使用Sigma-Plot 11酶动力学的酶动力学分析该过程基于Michaelis-Menten和LineWeaver-Burk图,它提供一阶反应和有序顺序Bi-Bi机制,其中V-Max,KM- 乙酸乙烯酯和KM-(S) - 丙醇分别为0.80mm / h,29.22mm和25.42mm。 进一步分析酶抑制发现,两种底物抑制了(S) - 丙醇酚和乙酸乙烯酯的过程分别产生竞争性抑制和混合抑制。 (S) - 丙醇与游离酶抑制酶的缔合高于活性酶 - 底物配合物与乙酸乙烯酯的反应。

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