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通过不常见的共价捕获机制,TEM β-内酰胺酶的去酰化缺陷突变体对第三代头孢菌素头孢他啶产生耐药性。

Resistance to the third-generation cephalosporin ceftazidime by a deacylation-deficient mutant of the TEM β-lactamase by the uncommon covalent-trapping mechanism.

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.

出版信息

Biochemistry. 2011 Jul 26;50(29):6387-95. doi: 10.1021/bi200403e. Epub 2011 Jun 29.

Abstract

The Glu166Arg/Met182Thr mutant of Escherichia coli TEM(pTZ19-3) β-lactamase produces a 128-fold increase in the level of resistance to the antibiotic ceftazidime in comparison to that of the parental wild-type enzyme. The single Glu166Arg mutation resulted in a dramatic decrease in both the level of enzyme expression in bacteria and the resistance to penicillins, with a concomitant 4-fold increase in the resistance to ceftazidime, a third-generation cephalosporin. Introduction of the second amino acid substitution, Met182Thr, restored enzyme expression to a level comparable to that of the wild-type enzyme and resulted in an additional 32-fold increase in the minimal inhibitory concentration of ceftazidime to 64 μg/mL. The double mutant formed a stable covalent complex with ceftazidime that remained intact for the entire duration of the monitoring, which exceeded a time period of 40 bacterial generations. Compared to those of the wild-type enzyme, the affinity of the TEM(pTZ19-3) Glu166Arg/Met182Thr mutant for ceftazidime increased by at least 110-fold and the acylation rate constant was augmented by at least 16-fold. The collective experimental data and computer modeling indicate that the deacylation-deficient Glu166Arg/Met182Thr mutant of TEM(pTZ19-3) produces resistance to the third-generation cephalosporin ceftazidime by an uncommon covalent-trapping mechanism. This is the first documentation of such a mechanism by a class A β-lactamase in a manifestation of resistance.

摘要

大肠杆菌 TEM(pTZ19-3)β-内酰胺酶的 Glu166Arg/Met182Thr 突变体对第三代头孢菌素头孢他啶的耐药水平比亲本野生型酶高 128 倍。单个 Glu166Arg 突变导致细菌中酶表达水平和青霉素耐药性显著降低,同时头孢他啶耐药性增加 4 倍,头孢他啶是第三代头孢菌素。引入第二个氨基酸取代 Met182Thr,使酶表达恢复到与野生型酶相当的水平,并使头孢他啶的最小抑菌浓度增加 32 倍,达到 64 μg/mL。双突变体与头孢他啶形成稳定的共价复合物,在整个监测过程中保持完整,超过 40 个细菌世代。与野生型酶相比,TEM(pTZ19-3)Glu166Arg/Met182Thr 突变体对头孢他啶的亲和力至少增加了 110 倍,酰化速率常数至少增加了 16 倍。综合实验数据和计算机建模表明,TEM(pTZ19-3)的脱酰基缺陷 Glu166Arg/Met182Thr 突变体通过一种不常见的共价捕获机制产生对第三代头孢菌素头孢他啶的耐药性。这是 A 类β-内酰胺酶在耐药性表现中通过这种机制产生耐药性的首次记录。

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