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阴沟肠杆菌P99和GClβ-内酰胺酶对头孢噻肟的周转动力学:通过稳态前和稳态后动力学相结合检测到P99β-内酰胺酶的两种游离酶形式。

Kinetics of turnover of cefotaxime by the Enterobacter cloacae P99 and GCl beta-lactamases: two free enzyme forms of the P99 beta-lactamase detected by a combination of pre- and post-steady state kinetics.

作者信息

Kumar Sanjai, Adediran S A, Nukaga Michiyoshi, Pratt R F

机构信息

Department of Chemistry, Wesleyan University, Middletown, Connecticut 06459, USA.

出版信息

Biochemistry. 2004 Mar 9;43(9):2664-72. doi: 10.1021/bi030212j.

Abstract

Third-generation cephalosporins bearing oximino side chains are resistant to hydrolysis by class C beta-lactamases such as that from Enterobacter cloacae P99. For example, steady state parameters for hydrolysis of cefotaxime by this enzyme are as follows: k(cat) = 0.41 s(-1), K(m) = 17.2 microM, and k(cat)/K(m) = 2.3 x 10(4) s(-1) M(-1). On the other hand, however, the K(i) value for cefotaxime as an inhibitor of cephalothin hydrolysis is 27 nM. The discrepancy between K(m) and K(i) indicated that a real steady state had not been achieved in at least one of these experiments. Analysis indicated that only two to three cefotaxime turnovers occurred during the K(i) determination. This suggested that the first few turnovers of cefotaxime by the P99 beta-lactamase may be different from those in the subsequent steady state. A direct pre-steady state experiment confirmed this hypothesis. The simplest reaction scheme that fitted the data involved replacement of the initial enzyme form, E, which bound cefotaxime tightly, with a second more weakly binding form, E', by partitioning of the acyl-enzyme intermediate during the first few turnovers. Steady state turnover of cefotaxime then largely involved E' as the free enzyme form. E' slowly reverted to E in the post-steady state regime. Further evidence for this scheme included quantitative analysis of the post-steady state and observation of a difference in the catalytic activity of E and E' in 2 M ammonium sulfate. The kinetics of P99 beta-lactamase-catalyzed hydrolysis of an acyclic depsipeptide substrate bearing a third-generation cephalosporin side chain showed that the side chain is necessary but not sufficient for production of resistance to beta-lactamase; a combination of the side chain and the dihydrothiazine ring of a cephalosporin is required. The beta-lactamase of E. cloacae GC1, an extended spectrum mutant of the P99 enzyme, rapidly hydrolyzes third-generation cephalosporins, without the structural transition described above. The flexibility of the extended Omega loop of the GC1 enzyme probably leads to this situation. Conformational restriction of the loop in the P99 enzyme is probably responsible for the long-lived acyl-enzyme intermediate and the transition to E' induced by cefotaxime.

摘要

带有肟基侧链的第三代头孢菌素对C类β-内酰胺酶(如阴沟肠杆菌P99产生的β-内酰胺酶)的水解作用具有抗性。例如,该酶催化头孢噻肟水解的稳态参数如下:k(cat) = 0.41 s(-1),K(m) = 17.2 μM,k(cat)/K(m) = 2.3×10(4) s(-1) M(-1)。然而,另一方面,头孢噻肟作为头孢菌素水解抑制剂的K(i)值为27 nM。K(m)和K(i)之间的差异表明,在这些实验中至少有一个未达到真正的稳态。分析表明,在K(i)测定过程中,头孢噻肟仅发生了两到三次周转。这表明P99β-内酰胺酶催化头孢噻肟的最初几次周转可能与随后的稳态周转不同。直接的预稳态实验证实了这一假设。符合数据的最简单反应方案涉及在最初几次周转期间,通过酰基酶中间体的分配,将紧密结合头孢噻肟的初始酶形式E替换为结合较弱的第二种形式E'。然后头孢噻肟的稳态周转主要涉及E'作为游离酶形式。在稳态后阶段,E'缓慢恢复为E。该方案的进一步证据包括对稳态后的定量分析以及在2 M硫酸铵中观察到E和E'催化活性的差异。P99β-内酰胺酶催化带有第三代头孢菌素侧链的无环缩肽底物水解的动力学表明,该侧链对于产生β-内酰胺酶抗性是必要的,但不是充分的;需要侧链与头孢菌素的二氢噻嗪环相结合。阴沟肠杆菌GC1(P99酶的广谱突变体)的β-内酰胺酶能快速水解第三代头孢菌素,且没有上述结构转变。GC1酶延伸的Ω环的灵活性可能导致了这种情况。P99酶中环的构象限制可能是长寿命酰基酶中间体以及头孢噻肟诱导向E'转变的原因。

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