Lizana Ignacio, Delgado Eduardo J
Computational Chemistry Group, Faculty of Chemical Sciences, Universidad de Concepción, Concepción, Chile.
J Mol Model. 2017 Jul;23(7):209. doi: 10.1007/s00894-017-3379-8. Epub 2017 Jun 20.
The reaction between the antibiotic cefotaxime and the CTX-M-14 class A serine hydrolase is addressed from a theoretical point of view, by means of hybrid quantum mechanics/molecular mechanical (QM/MM) calculations, adopting a new approach that postulates that the residue Ser70 itself should play the role of the acid-base species required for the cefotaxime acylation. The proposed mechanism differs from earlier proposals existing in literature for other class A β-lactamases. The results confirm the hypothesis, and show that the reaction should occur via a concerted mechanism in which the acylation of the lactam carbonyl carbon, protonation of the N lactam atom, and opening of the β-lactam ring occurs simultaneously. Exploration of the potential energy surface shows three critical points, associated with reactants, transition state and product. The transition state is characterized by frequency, intrinsic reaction coordinate, atomic charge, and bond orders calculations. The calculated activation barrier is 20 kcal mol, and the reaction appears to be slightly endothermic by about 12 kcal mol. We conclude that this approach is feasible, and should be considered as an alternative mechanism or may exist in competition with others already published in the literature. This information should be useful for the design of novel antibiotics and β-lactamase inhibitors. Graphical abstract Three-dimensional view of the potential energy surface of cefotaxime.
从理论角度出发,通过采用混合量子力学/分子力学(QM/MM)计算方法,研究了抗生素头孢噻肟与CTX-M-14 A类丝氨酸水解酶之间的反应。该方法采用了一种新的假设,即Ser70残基本身应发挥头孢噻肟酰化所需的酸碱物种的作用。所提出的机制与文献中针对其他A类β-内酰胺酶的早期提议不同。结果证实了这一假设,并表明该反应应通过协同机制发生,其中内酰胺羰基碳的酰化、N内酰胺原子的质子化以及β-内酰胺环的开环同时发生。对势能面的探索显示了与反应物、过渡态和产物相关的三个临界点。通过频率、本征反应坐标、原子电荷和键级计算对过渡态进行了表征。计算得到的活化能垒为20千卡/摩尔,反应似乎略微吸热,约为12千卡/摩尔。我们得出结论,这种方法是可行的,应被视为一种替代机制,或者可能与文献中已发表的其他机制存在竞争。这些信息对于新型抗生素和β-内酰胺酶抑制剂的设计应该是有用的。图形摘要 头孢噻肟势能面的三维视图。