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首页> 外文期刊>Physical chemistry chemical physics: PCCP >A QM/MM MD study of the pH-dependent ring-opening catalysis and lid motif flexibility in glucosamine 6-phosphate deaminase
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A QM/MM MD study of the pH-dependent ring-opening catalysis and lid motif flexibility in glucosamine 6-phosphate deaminase

机译:QM / MM MD研究氨基葡萄糖6-磷酸脱氨酶中pH依赖性开环催化和盖基序柔性

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摘要

The glucosamine 6-phosphate deaminase (NagB), which catalyzes the conversion of D-glucosamine 6-phosphate (GlcN6P) into D-fructose 6-phosphate (F6P) and ammonia, determines the final metabolic fate of N-acetylglucosamine (GlcNAc). Here using state-of-the-art ab initio QM/MM MD simulations, we have explored the plausible mechanisms for the enzymatic ring-opening of GlcN6P in the basic environment. Two different proton-shuttle mechanisms have been proposed. Calculations show that the protonated state of the amino group in the substrate dominates the concerted and stepwise catalytic pathways and a catalytic triad plays an important role in mediating the proton transfer and the resulting ring-opening process. The free energy barrier for the rate-determining step in the low-energy stepwise reaction is 17.9 kcal mol~(-1). In acidic solution, the lid motif prefers a closed state while it always stays in the open state in basic solution upon substrate binding, which is basically dominated by the protonated state of the residue Hisl45.
机译:葡糖胺6-磷酸脱氨酶(NagB)催化D-葡糖胺6-磷酸(GlcN6P)转化为D-果糖6-磷酸(F6P)和氨,决定了N-乙酰葡糖胺(GlcNAc)的最终代谢命运。在这里,我们使用最先进的从头开始的QM / MM MD模拟,探索了在基本环境中GlcN6P酶促开环的合理机制。已经提出了两种不同的质子穿梭机制。计算表明,底物中氨基的质子化状态主导着协调和逐步的催化途径,催化三元组在介导质子转移和最终的开环过程中起着重要作用。低能逐步反应中速率确定步骤的自由能垒为17.9 kcal mol〜(-1)。在酸性溶液中,盖基序倾向于封闭状态,而在与底物结合后在碱性溶液中始终保持打开状态,这基本上由残基His145的质子化状态决定。

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