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首页> 外文期刊>Journal of molecular modeling >Theoretical study of formate, tartrate, tartronate, and glycolate production from 6-carbon trioxylate intermediate in the citric acid cycle
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Theoretical study of formate, tartrate, tartronate, and glycolate production from 6-carbon trioxylate intermediate in the citric acid cycle

机译:柠檬酸循环中6-碳三氧晶含中间体甲酸甲酯,酒石酸盐,丁酸酯和乙醇酸的理论研究

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Reaction pathways of side products (formate, glycolate, and tartronate) from dihydroxyfumarate (DHF) were theoretically investigated as DHF is an intermediate in the process of producing tartrates and oxalate from glyoxylate of the citric acid cycle. The proposed pathways for each reaction were mapped by density functional theory (DFT) calculations. The transitions states were confirmed by analyzing the vibrational frequency and the intrinsic reaction coordinate (IRC) theory. The corresponding reaction activation energy, enthalpy change, Gibb's free energy change, and rate of reactions were calculated to get a clear picture of the whole reaction pathway. In the whole process, the decarboxylation reaction showed the highest energy barrier of 20-23 kcal/mol. Proton transfer and hydroxylation reactions were almost barrierless. As most of these reactions have very low energy barrier, our findings elucidate the high probability of those reactions under experimental conditions.
机译:理论上研究了副产物(甲酸,乙酸盐和丁酸酯)的反应途径,因为DHF是在生产酒石酸甲酸甲酸乙二醇酯的生产过程中的中间体中的中间体。 每个反应的所提出的途径被密度函数理论(DFT)计算映射。 通过分析振动频率和内在反应坐标(IRC)理论来确认转变状态。 计算相应的反应活化能量,焓变,GIBB的自由能变化和反应速率以获得整个反应途径的清晰图像。 在整个过程中,脱羧反应显示出20-23kcal / mol的最高能量屏障。 质子转移和羟基化反应几乎是障碍物。 由于大多数反应具有非常低的能量屏障,我们的研究结果在实验条件下阐明了这些反应的高可能性。

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