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Phenotypic Study of Resistance of β-Lactamase-Inhibitor-Resistant TEM Enzymes Which Differ by Naturally Occurring Variations and by Site-Directed Substitution at Asp276

机译:β-内酰胺酶抑制剂的TEM酶抗性的表型研究该酶因自然发生的变化和定点置换在Asp276上不同

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摘要

At this time an amino acid substitution at position 276 in the TEM-1 enzyme is associated with an additional substitution at position 69 in natural β-lactamase-inhibitor-resistant (IRT) β-lactamases. The effect of the Asn276→Asp substitution on resistance was assessed with the Asn276Asp variant, generated by site-directed mutagenesis. The mutant was resistant to β-lactamase inhibitors, but the MICs of amoxicillin combined with clavulanic acid or tazobactam were strikingly different for E. coli strains producing the Asn276Asp variant and those producing naturally occurring IRTs with single or double substitutions. The inhibitory effects of clavulanic acid and tazobactam were the same in IRTs with substitutions at position 69 (IRT-5 and IRT-6). The effect of clavulanic acid on the MICs of amoxicillin for the Asn276Asp variant was greater than that of tazobactam. In IRTs with double substitutions, at positions 69 plus 276 (IRT-4, IRT-7, and IRT-8) or 69 plus 275 (IRT-14), tazobactam was a more potent inhibitor than clavulanic acid. The effect of the Asn276→Asp substitution on the values of the kinetic constants and the concentration required to inhibit by 50% the hydrolysis of benzylpenicillin confirms that this single mutation is responsible for resistance to β-lactamase inhibitors. Molecular modeling of the Asn276Asp mutant shows that Asp276 can form two salt bonds with Arg244 close to the penicillin-binding cavity. The addition of the Asp276 mutation to that preexisting at position 69 confers a higher selective advantage to bacteria, as shown by the reduction in β-lactamase inhibitor efficiencies of the double variants. Therefore, the emergence of multiple mutations in TEM β-lactamases by virtue of the use of β-lactamase inhibitors increases selection pressure resulting in the convergent evolution of resistant strains.
机译:此时,TEM-1酶中276位的氨基酸取代与天然β-内酰胺酶抑制剂抗性(IRT)β-内酰胺酶中69位的额外取代相关。通过位点诱变产生的Asn276Asp变体评估了Asn 276 →Asp替代对抗性的影响。该突变体对β-内酰胺酶抑制剂具有抗性,但阿莫西林与克拉维酸或他唑巴坦联合使用的MIC对于产生Asn276Asp变体的大肠杆菌菌株和产生具有单或双取代的天然IRT的菌株而言,差异显着。棒酸和他唑巴坦的抑制作用在IRT中相同,但在69位(IRT-5和IRT-6)被取代。棒酸对Asn276Asp变体对阿莫西林MIC的影响大于他唑巴坦。在具有双取代的IRT中,在69加276位(IRT-4,IRT-7和IRT-8)或69加275位(IRT-14)处,他唑巴坦是比克拉维酸更有效的抑制剂。 Asn 276 →Asp取代对动力学常数值和抑制苄青霉素水解所需浓度的影响为50%,这证实了该单一突变是对β-内酰胺酶抑制剂的抗性原因。 Asn276Asp突变体的分子模型表明,Asp 276 可以与靠近青霉素结合腔的Arg 244 形成两个盐键。将Asp 276 突变添加到先前在69位上存在的突变中,可赋予细菌更高的选择优势,如双重变体的β-内酰胺酶抑制剂效率降低所显示。因此,通过使用β-内酰胺酶抑制剂,TEMβ-内酰胺酶中多个突变的出现增加了选择压力,导致抗性菌株的趋同进化。

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