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头孢菌素对金黄色葡萄球菌PC1β-内酰胺酶的抑制机制:3'-离去基团的重要性

Mechanism of inhibition of the PC1 beta-lactamase of Staphylococcus aureus by cephalosporins: importance of the 3'-leaving group.

作者信息

Faraci W S, Pratt R F

出版信息

Biochemistry. 1985 Feb 12;24(4):903-10. doi: 10.1021/bi00325a014.

Abstract

The hydrolysis of cephalosporins containing good leaving groups at the 3'-position [those used in this study were the chromogenic cephalosporin PADAC [pyridine-2-azo-4'-(N',N'-dimethylaniline) substituted on cephalosporin], cephaloridine, and cephalothin], catalyzed by the Staphylococcus aureus PC1 beta-lactamase, proceeds in two spectrophotometrically observable phases. The first involves formation of an acyl-enzyme intermediate while the second involves partitioning of this intermediate between two pathways. One path yields the normal cephalosporoate (3) from which the 3'-leaving group is spontaneously eliminated in solution to give the 3-methylenedihydrothiazine 2, while the second involves initial elimination of the 3' substituent, thus yielding a second acyl-enzyme intermediate, which then hydrolyzes to give the same final product as from the first pathway. The second acyl-enzyme is relatively inert to hydrolysis (t1/2 congruent to 10 min at 20 degrees C), and its formation thus leads to transient inhibition of the enzyme. The partition ratio between hydrolysis and elimination at the enzyme active site could be determined either spectrophotometrically from burst experiments or from measurements of residual beta-lactamase activity as a function of cephalosporin concentration. This ratio varied with the leaving group ability of the 3' substituent (acetoxy greater than N,N-dimethylaniline-4-azo-2'-pyridinium greater than pyridinium) in the anticipated fashion. The inert acyl-enzyme intermediate was isolated by exclusion chromatography and shown to contain the cephem nucleus, but not the 3' substituent, covalently bound to the enzyme. As would be expected, PADAC, cephaloridine, and cephalothin yielded the same inert intermediate. Cephalosporins with poor or no 3'-leaving groups, e.g., dansylcephalothin and desacetoxycephalothin, neither displayed the branched pathway nor yielded the long-lived acyl-enzyme.

摘要

金黄色葡萄球菌PC1β-内酰胺酶催化3'-位含有良好离去基团的头孢菌素(本研究中使用的是生色头孢菌素PADAC [头孢菌素上取代的吡啶-2-偶氮-4'-(N',N'-二甲基苯胺)]、头孢噻啶和头孢噻吩)的水解反应,该反应分两个可用分光光度法观察到的阶段进行。第一阶段涉及酰基酶中间体的形成,而第二阶段涉及该中间体在两条途径之间的分配。一条途径产生正常的头孢菌素酸(3),其3'-离去基团在溶液中自发消除,生成3-亚甲基二氢噻嗪2,而第二条途径涉及3'取代基的初始消除,从而产生第二个酰基酶中间体,然后该中间体水解生成与第一条途径相同的最终产物。第二个酰基酶对水解相对惰性(在20℃下t1/2约为10分钟),因此其形成导致酶的瞬时抑制。酶活性位点处水解与消除之间的分配比可以通过爆发实验用分光光度法测定,也可以通过测量作为头孢菌素浓度函数的残余β-内酰胺酶活性来测定。该比例以预期方式随3'取代基的离去基团能力(乙酰氧基>N,N-二甲基苯胺-4-偶氮-2'-吡啶鎓>吡啶鎓)而变化。通过排阻色谱法分离出惰性酰基酶中间体,结果表明其含有头孢烯核,但不含有与酶共价结合的3'取代基。不出所料,PADAC、头孢噻啶和头孢噻吩产生相同的惰性中间体。3'-离去基团差或没有离去基团的头孢菌素,例如丹磺酰头孢噻吩和去乙酰氧基头孢噻吩,既不显示分支途径,也不产生长寿命的酰基酶。

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