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A类β-内酰胺酶的pKa计算:方法学和机制学意义

pKa calculations for class A beta-lactamases: methodological and mechanistic implications.

作者信息

Raquet X, Lounnas V, Lamotte-Brasseur J, Frère J M, Wade R C

机构信息

European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

Biophys J. 1997 Nov;73(5):2416-26. doi: 10.1016/S0006-3495(97)78270-5.

Abstract

Beta-lactamases are responsible for resistance to penicillins and related beta-lactam compounds. Despite numerous studies, the identity of the general base involved in the acylation step is still unclear. It has been proposed, on the basis of a previous pKa calculation and analysis of structural data, that the unprotonated Lys73 in the active site could act as the general base. Using a continuum electrostatic model with an improved treatment of the multiple titration site problem, we calculated the pKa values of all titratable residues in the substrate-free TEM-1 and Bacillus licheniformis class A beta-lactamases. The pKa of Lys73 in both enzymes was computed to be above 10, in good agreement with recent experimental data on the TEM-1 beta-lactamase, but inconsistent with the proposal that Lys73 acts as the general base. Even when the closest titratable residue, Glu166, is mutated to a neutral residue, the predicted downward shift of the pKa of Lys73 shows that it is unlikely to act as a proton abstractor in either enzyme. These results support a mechanism in which the proton of the active Ser70 is transferred to the carboxylate group of Glu166.

摘要

β-内酰胺酶导致对青霉素及相关β-内酰胺化合物产生耐药性。尽管进行了大量研究,但酰化步骤中涉及的通用碱的身份仍不明确。基于先前的pKa计算和结构数据分析,有人提出活性位点中未质子化的Lys73可能充当通用碱。我们使用一种改进了多滴定位点问题处理的连续静电模型,计算了无底物的TEM-1和地衣芽孢杆菌A类β-内酰胺酶中所有可滴定残基的pKa值。两种酶中Lys73的pKa经计算均高于10,这与最近关于TEM-1β-内酰胺酶的实验数据高度一致,但与Lys73充当通用碱的提议不一致。即使将最接近的可滴定残基Glu166突变为中性残基,预测的Lys73的pKa向下位移表明它不太可能在任何一种酶中充当质子抽取剂。这些结果支持了一种机制,即活性Ser70的质子转移到Glu166的羧基上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54ea/1181143/225ceabdee80/biophysj00028-0179-a.jpg

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