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A QM/MM Metadynamics Study of the Direct Decarboxylation Mechanism for Orotidine-5-monophosphate Decarboxylase using Two Different QM Regions: Acceleration too Small to Explain Rate of Enzyme Catalysis

机译:使用两个不同的QM区域对Orotidine-5-单磷酸脱羧酶的直接脱羧机理的QM / MM动力学研究:加速度太小无法说明酶的催化速率

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摘要

Despite decades of study, the mechanism by which orotidine-5'-monophosphate decarboxylase (ODCase) catalyzes the decarboxylation of orotidine monophosphate remains unresolved. A computational investigation of the direct decarboxylation mechanism has been performed using mixed quantum mechanical/molecular mechanical (QM/MM) dynamics simulations. The study was performed with the program CP2K that integrates classical dynamics and ab initio dynamics based on the Born-Oppenheimer approach. Two different QM regions were explored. The free energy barriers for decarboxylation of orotidine-5'-monophosphate (OMP) in solution and in the enzyme (using the larger QM region) were determined with the metadynamics method to be 40 kcal/mol and 33 kcal/mol, respectively. The calculated change in activation free energy (ΔΔG±) on going from solution to the enzyme is therefore −7 kcal/mol, far less than the experimental change of −23 kcal/mol (for kcat/kuncat Radzicka, A.; Wolfenden, R., Science. >1995, 267, 90–92). These results do not support the direct decarboxylation mechanism that has been proposed for the enzyme. However, in the context of QM/MM calculations, it was found that the size of the QM region has a dramatic effect on the calculated reaction barrier.
机译:尽管进行了数十年的研究,但牛尿苷5'-单磷酸脱羧酶(ODCase)催化牛尿苷单磷酸脱羧的机理仍未阐明。已使用混合量子力学/分子力学(QM / MM)动力学模拟进行了直接脱羧机理的计算研究。这项研究是使用CP2K程序进行的,该程序基于Born-Oppenheimer方法整合了经典动力学和从头算动力学。探索了两个不同的质量管理区域。溶液动力学和酶动力学(使用较大的QM区域)中的Orotidine-5'-单磷酸盐(OMP)脱羧的自由能垒分别通过元动力学方法确定为40 kcal / mol和33 kcal / mol。因此,从溶液到酶的活化自由能的计算变化(ΔΔG±)为-7 kcal / mol,远小于实验结果的−23 kcal / mol(对于kcat / kuncat) Radzicka,A .; Wolfenden,R.,Science。> 1995 ,267,90-92)。这些结果不支持针对该酶提出的直接脱羧机制。但是,在QM / MM计算的背景下,发现QM区域的大小对计算出的反应势垒有显着影响。

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