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Mechanistic insights into the phosphoryl transfer reaction in cyclin-dependent kinase 2: A QM/MM study

机译:对细胞周期蛋白依赖性激酶2中的磷酰基转移反应的机理性见解2:一项QM / MM研究

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摘要

Cyclin-dependent kinase 2 (CDK2) is an important member of the CDK family exerting its most important function in the regulation of the cell cycle. It catalyzes the transfer of the gamma phosphate group from an ATP (adenosine triphosphate) molecule to a Serine/Threonine residue of a peptide substrate. Due to the importance of this enzyme, and protein kinases in general, a detailed understanding of the reaction mechanism is desired. Thus, in this work the phosphoryl transfer reaction catalyzed by CDK2 was revisited and studied by means of hybrid quantum mechanics/molecular mechanics (QM/MM) calculations. Our results suggest that the base-assisted mechanism is preferred over the substrate-assisted pathway when one Mg2+ is present in the active site, in agreement with a previous theoretical study. The base-assisted mechanism resulted to be dissociative, with a potential energy barrier of 14.3 kcal/mol, very close to the experimental derived value. An interesting feature of the mechanism is the proton transfer from Lys129 to the phosphoryl group at the second transition state, event that could be helping in neutralizing the charge on the phosphoryl group upon the absence of a second Mg2+ ion. Furthermore, important insights into the mechanisms in terms of bond order and charge analysis were provided. These descriptors helped to characterize the synchronicity of bond forming and breaking events, and to characterize charge transfer effects. Local interactions at the active site are key to modulate the charge distribution on the phosphoryl group and therefore alter its reactivity.
机译:细胞周期蛋白依赖性激酶2(CDK2)是CDK家族的重要成员,在调节细胞周期中发挥着最重要的作用。它催化γ-磷酸酯基团从ATP(三磷酸腺苷)分子转移到肽底物的丝氨酸/苏氨酸残基上。由于该酶和通常的蛋白激酶的重要性,因此需要对反应机理的详细理解。因此,在这项工作中,通过混合量子力学/分子力学(QM / MM)计算,重新研究了由CDK2催化的磷酰基转移反应。我们的研究结果表明,与以前的理论研究相一致,当活性位点中存在一个Mg 2 + 时,碱辅助机制优于基质辅助途径。结果表明,碱辅助机制是解离的,势垒为14.3 kcal / mol,非常接近实验得出的值。该机制的一个有趣特征是在第二过渡态下质子从Lys129转移至磷酸基团,该事件可能有助于在缺少第二个Mg 2 + 离子。此外,提供了有关债券顺序和费用分析机制的重要见解。这些描述符有助于表征键形成和断裂事件的同步性,以及表征电荷转移效应。活性位点的局部相互作用是调节磷酸基团上电荷分布并因此改变其反应性的关键。

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