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金属β-内酰胺酶L1的反应中间体与金属结合的直接证据。

Direct evidence that the reaction intermediate of metallo-beta-lactamase L1 is metal bound.

作者信息

Garrity James D, Bennett Brian, Crowder Michael W

机构信息

Department of Chemistry and Biochemistry, Miami University, 112 Hughes Hall, Oxford, Ohio 45056, USA.

出版信息

Biochemistry. 2005 Jan 25;44(3):1078-87. doi: 10.1021/bi048385b.

Abstract

In an effort to probe the structure of the reaction intermediate of metallo-beta-lactamase L1 when reacted with nitrocefin and other beta-lactams, time-dependent absorption and rapid-freeze-quench (RFQ) EPR spectra were obtained using the Co(II)-substituted form of the enzyme. When using nitrocefin as the substrate, time-dependent absorption spectra demonstrate that Co(II)-substituted L1 utilizes a reaction mechanism, similar to that of the native Zn(II) enzyme, in which a short-lived intermediate forms. RFQ-EPR spectra of this intermediate demonstrate that the binding of substrate results in a change in the electronic properties of one or both of the Co(II)'s in the enzyme that is consistent with a change in the coordination sphere of this metal ion. This observation provides evidence that the reaction intermediate is a metal-bound species. RFQ-EPR studies also demonstrate that other beta-lactams, such as cephalothin, meropenem, and penicillin G, proceed through an electronically similar complex and that the role of metal is similar in all cases. EPR spectroscopy has also identified distinct product-bound species of L1, indicating that reversible product binding must be considered in all future kinetic mechanisms. Consideration of the time-dependent optical and EPR studies in light of available crystallographic information indicates the intimate involvement of the metal ion in the Zn(2)-binding site of L1 in the hydrolytic reaction.

摘要

为了探究金属β-内酰胺酶L1与硝基头孢菌素及其他β-内酰胺反应时反应中间体的结构,我们使用酶的钴(II)取代形式获得了时间分辨吸收光谱和快速冷冻淬灭(RFQ)电子顺磁共振(EPR)光谱。以硝基头孢菌素为底物时,时间分辨吸收光谱表明,钴(II)取代的L1利用了一种与天然锌(II)酶类似的反应机制,即形成一种短寿命中间体。该中间体的RFQ-EPR光谱表明,底物的结合导致酶中一个或两个钴(II)的电子性质发生变化,这与该金属离子配位球的变化一致。这一观察结果证明反应中间体是一种金属结合物种。RFQ-EPR研究还表明,其他β-内酰胺,如头孢噻吩、美罗培南和青霉素G,通过电子性质相似的复合物进行反应,且在所有情况下金属的作用相似。EPR光谱还鉴定出了L1不同的产物结合物种,这表明在所有未来的动力学机制中都必须考虑可逆的产物结合。根据现有的晶体学信息对时间分辨光学和EPR研究进行考量,结果表明锌(2)结合位点中的金属离子在L1的水解反应中密切参与。

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