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首页> 外文期刊>Chemistry: A European journal >Quantum Mechanics/Molecular Mechanics Studies on the Mechanism of Action of Cofactor Pyridoxal 5'-Phosphate in Ornithine 4,5-Aminomutase
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Quantum Mechanics/Molecular Mechanics Studies on the Mechanism of Action of Cofactor Pyridoxal 5'-Phosphate in Ornithine 4,5-Aminomutase

机译:鸟氨酸4,5-氨基变位酶中辅因子吡咯醛5'-磷酸作用机理的量子力学/分子力学研究

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A computational study was performed on the experimentally elusive cyclisation step in the cofactor pyridoxal 5'-phosphate (PLP)-dependent d-ornithine 4,5-aminomutase (OAM)-catalysed reaction. Calculations using both model systems and a combined quantum mechanics/molecular mechanics approach suggest that regulation of the cyclic radical intermediate is achieved through the synergy of the intrinsic catalytic power of cofactor PLP and the active site of the enzyme. The captodative effect of PLP is balanced by an enzyme active site that controls the deprotonation of both the pyridine nitrogen atom (N1) and the Schiff-base nitrogen atom (N2). Furthermore, electrostatic interactions between the terminal carboxylate and amino groups of the substrate and Arg297 and Glu81 impose substantial "strain" energy on the orientation of the cyclic intermediate to control its trajectory. In addition the "strain" energy, which appears to be sensitive to both the number of carbon atoms in the substrate/ analogue and the position of the radical intermediates, may play a key role in controlling the transition of the enzyme from the closed to the open state. Our results provide new insights into several aspects of the radical mechanism in aminomutase catalysis and broaden our understanding of cofactor PLP-dependent reactions.
机译:在辅助因子吡ido醛5'-磷酸酯(PLP)依赖性d-鸟氨酸4,5-氨基变位酶(OAM)催​​化的反应中,对实验上难以捉摸的环化步骤进行了计算研究。使用模型系统和组合的量子力学/分子力学方法进行的计算表明,环自由基中间体的调节是通过辅因子PLP的固有催化能力和酶的活性位点的协同作用实现的。通过控制吡啶氮原子(N1)和席夫碱氮原子(N2)的去质子化的酶活性位点,PLP的俘获作用得到平衡。此外,末端羧酸盐和底物的氨基以及Arg297和Glu81之间的静电相互作用在环状中间体的方向上施加了很大的“应变”能量,以控制其轨迹。另外,似乎对底物/类似物中的碳原子数和自由基中间体的位置均敏感的“应变”能可能在控制酶从封闭到氢的转变中起关键作用。打开状态。我们的结果提供了对氨基突变酶催化中自由基机制几个方面的新见解,并拓宽了我们对辅因子PLP依赖性反应的理解。

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