首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Molecular Characterization of a Cephamycin-Hydrolyzing and Inhibitor-Resistant Class A β-Lactamase GES-4 Possessing a Single G170S Substitution in the Ω-Loop
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Molecular Characterization of a Cephamycin-Hydrolyzing and Inhibitor-Resistant Class A β-Lactamase GES-4 Possessing a Single G170S Substitution in the Ω-Loop

机译:头孢菌素水解和抗抑制剂的A类β-内酰胺酶GES-4的分子表征在Ω环中具有单个G170S取代基

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摘要

The nosocomial spread of six genetically related Klebsiella pneumoniae strains producing GES-type β-lactamases was found in a neonatal intensive care unit, and we previously reported that one of the six strains, strain KG525, produced a new β-lactamase, GES-3. In the present study, the molecular mechanism of cephamycin resistance observed in strain KG502, one of the six strains described above, was investigated. This strain was found to produce a variant of GES-3, namely, GES-4, which was responsible for resistance to both cephamycins (cefoxitin MIC, >128 μg/ml) and β-lactamase inhibitors (50% inhibitory concentration of clavulanic acid, 15.2 ± 1.7 μM). The GES-4 enzyme had a single G170S substitution in the Ω-loop region compared with the GES-3 sequence. This single amino acid substitution was closely involved with the augmented hydrolysis of cephamycins and carbapenems and the decreased affinities of β-lactamase inhibitors to GES-4. A cloning experiment and sequencing analysis revealed that strain KG502 possesses duplicate blaGES-4 genes mediated by two distinct class 1 integrons with similar gene cassette configurations. Moreover, the genetic environments of the blaGES-4 genes found in strain KG502 were almost identical to that of blaGES-3 in strain KG525. From these findings, these two phenotypically different strains were suggested to belong to a clonal lineage. The blaGES-4 gene found in strain KG502 might well emerge from a point mutation in the blaGES-3 gene harbored by its ancestor strains, such as strain KG525, under heavy antibiotic stress in order to acquire extended properties of resistance to cephamycins and carbapenems.
机译:在新生儿重症监护病房中发现了六种与基因相关的产生GES型β-内酰胺酶的肺炎克雷伯菌的医院内传播,我们先前曾报道这六种菌株之一KG525菌株产生了一种新的β-内酰胺酶GES-3。 。在本研究中,研究了在上述六种菌株之一的菌株KG502中观察到的对头霉素抗性的分子机制。发现该菌株可产生GES-3的变体,即GES-4,其对头孢霉素(头孢西丁MIC,> 128μg/ ml)和β-内酰胺酶抑制剂(抑制浓度为棒酸的50%)产生抗性,15.2±1.7μM)。与GES-3序列相比,GES-4酶在Ω环区域具有单个G170S取代。该单个氨基酸取代与头霉素和碳青霉烯类的增强水解以及β-内酰胺酶抑制剂对GES-4的亲和力降低密切相关。克隆实验和测序分析表明,KG502菌株具有重复的blaGES-4基因,该基因由具有相似基因盒构型的两个不同的1类整合素介导。此外,在菌株KG502中发现的blaGES-4基因的遗传环境与在菌株KG525中的blaGES-3的遗传环境几乎相同。从这些发现,这两个表型不同的菌株被建议属于克隆谱系。在KG502菌株中发现的blaGES-4基因很可能从其祖先菌株(如KG525菌株)在严重的抗生素胁迫下所携带的blaGES-3基因的点突变中出现,从而获得了对头孢霉素和碳青霉烯类药物的耐药性扩展特性。

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