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The role of water molecules in the deacylation of acylated structures of class A beta-lactamase.

机译:水分子在A类β-内酰胺酶的酰化结构脱酰作用中的作用。

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摘要

Molecular dynamics simulation of the penicillin- and penem-acylated enzymes reveals that the conformational flexibility of the acyl moieties in the binding cleft and the conformational change of the acyl moieties are crucial for deacylation. The water molecule adjacent to the Glu 166 residue is not the nucleophile for deacylation, but construction of a model of the oxyanion tetrahedral intermediate suggested a plausible role of the water molecule as a proton donor for the oxyanion to facilitate the deacylation.
机译:青霉素和青霉素酰化酶的分子动力学模拟表明,结合裂隙中的酰基部分的构象柔性和酰基部分的构象变化对于脱酰作用至关重要。与Glu 166残基相邻的水分子不是用于脱酰的亲核试剂,但是构建氧阴离子四面体中间体的模型表明,水分子作为氧阴离子的质子供体促进了脱酰的合理作用。

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