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OXA-517 的结构和生化特征:一种碳青霉烯类和扩展谱头孢菌素水解 OXA-48 变体。

Structural and Biochemical Features of OXA-517: a Carbapenem and Expanded-Spectrum Cephalosporin Hydrolyzing OXA-48 Variant.

机构信息

Team "Resist" UMR1184, INSERM, CEA, University Paris-Saclay, LabEx LERMIT, Faculty of Medicine, Le Kremlin-Bicêtre, France.

French National Reference Center for Antibiotic Resistance: Carbapenemase-producing Enterobacterales, Le Kremlin-Bicêtre, France.

出版信息

Antimicrob Agents Chemother. 2023 Feb 16;67(2):e0109522. doi: 10.1128/aac.01095-22. Epub 2023 Jan 17.

Abstract

OXA-48-producing Enterobacterales have now widely disseminated throughout the world. Several variants have now been reported, differing by just a few amino-acid substitutions or deletions, mostly in the region of the loop β5-β6. As OXA-48 hydrolyzes carbapenems but lacks significant expanded-spectrum cephalosporin (ESC) hydrolytic activity, ESCs were suggested as a therapeutic option. Here, we have characterized OXA-517, a natural variant of OXA-48- with an Arg214Lys substitution and a deletion of Ile215 and Glu216 in the β5-β6 loop, capable of hydrolyzing at the same time ESC and carbapenems. MICs values of E. coli expressing gene revealed reduced susceptibility to carbapenems (similarly to OXA-48) and resistance to ESCs. Steady-state kinetic parameters revealed high catalytic efficiencies for ESCs and carbapenems. The gene was located on a ca. 31-kb plasmid identical to the prototypical IncL -carrying plasmid except for an IS-mediated deletion of 30.7-kb in the operon. The crystal structure of OXA-517, determined to 1.86 Å resolution, revealed an expanded active site compared to that of OXA-48, which allows for accommodation of the bulky ceftazidime substrate. Our work illustrates the remarkable propensity of OXA-48-like carbapenemases to evolve through mutation/deletion in the β5-β6 loop to extend its hydrolysis profile to encompass most β-lactam substrates.

摘要

产 OXA-48 的肠杆菌科现在已经在全球范围内广泛传播。现在已经报道了几种变体,它们只在几个氨基酸取代或缺失上有所不同,主要在环β5-β6 区域。由于 OXA-48 水解碳青霉烯但缺乏显著的扩展谱头孢菌素 (ESC) 水解活性,因此 ESC 被认为是一种治疗选择。在这里,我们描述了 OXA-517,这是 OXA-48 的天然变体,在β5-β6 环中带有 Arg214Lys 取代和 Ile215 和 Glu216 的缺失,能够同时水解 ESC 和碳青霉烯。表达 基因的大肠杆菌的 MIC 值显示对碳青霉烯类药物(与 OXA-48 相似)的敏感性降低和对 ESC 的耐药性。稳态动力学参数显示对 ESC 和碳青霉烯类药物具有高催化效率。 基因位于一个约 31-kb 的质粒上,与原型 IncL 携带的质粒相同,除了在 操纵子中 IS 介导的 30.7-kb 缺失。OXA-517 的晶体结构,分辨率为 1.86 Å,与 OXA-48 相比,其活性位点扩大,允许容纳庞大的头孢他啶底物。我们的工作说明了 OXA-48 样碳青霉烯酶通过β5-β6 环中的突变/缺失进化以扩展其水解谱以包含大多数β-内酰胺底物的惊人倾向。

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本文引用的文献

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Biochemical characterization of OXA-244, an emerging OXA-48 variant with reduced β-lactam hydrolytic activity.
J Antimicrob Chemother. 2021 Jul 15;76(8):2024-2028. doi: 10.1093/jac/dkab142.
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Comparative Kinetic Analysis of OXA-438 with Related OXA-48-Type Carbapenem-Hydrolyzing Class D β-Lactamases.
ACS Infect Dis. 2020 Nov 13;6(11):3026-3033. doi: 10.1021/acsinfecdis.0c00537. Epub 2020 Oct 1.
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