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Mutation S115T in IMP-Type Metallo-β-Lactamases Compensates for Decreased Expression Levels Caused by Mutation S119G

机译:IMP型金属-β-内酰胺酶中的突变S115T补偿了由突变S119G引起的表达水平降低

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摘要

(1) Background: Metallo-β-lactamases (MBLs) have raised concerns due to their ability to inactivate carbapenems and newer generation cephalosporins and the absence of clinically available MBL inhibitors. Their genes are often transferred horizontally, and the number of MBL variants has grown exponentially, with many newer variants showing enhanced enzyme activity or stability. In this study, we investigated a closely related group of variants from the IMP family that all contain the combination of mutations S115T and S119G relative to IMP-1. (2) Methods: The effects of each individual mutation and their combination in the IMP-1 sequence background in comparison to IMP-1 were investigated. Their ability to confer resistance and their in-cell expression levels were determined. All enzymes were purified, and their secondary structure and thermal stability were determined with circular dichroism. Their Zn(II) content and kinetic constants with a panel of β-lactam antibiotics were determined. (3) Results: All four enzymes were viable and conferred resistance to all antibiotics tested except aztreonam. However, the single-mutant enzymes were slightly deficient, IMP-1S115T due to decreased enzyme activity and IMP-1-S119G due to decreased thermal stability and expression, while the double mutant did not show these defects. (4) Conclusions: These observations suggest that S119G was acquired due to its increased enzyme activity and S115T to suppress the thermal stability and expression defect introduced by S119G.
机译:(1)背景:金属β-内酰胺酶(MBL)由于使碳青霉烯和新一代头孢菌素失活的能力而缺乏临床可用的MBL抑制剂,因此引起了人们的关注。它们的基因通常水平转移,MBL变体的数量呈指数增长,许多更新的变体显示出增强的酶活性或稳定性。在这项研究中,我们调查了来自IMP家族的一组密切相关的变体,这些变体均包含相对于IMP-1的突变S115T和S119G的组合。 (2)方法:研究了每个突变及其组合在IMP-1序列背景下与IMP-1相比的影响。确定了它们赋予抗性的能力及其细胞内表达水平。纯化所有酶,并用圆二色性测定其二级结构和热稳定性。测定了它们的Zn(II)含量和一组β-内酰胺抗生素的动力学常数。 (3)结果:除了氨曲南以外,所有四种酶均是可行的并且对所有测试的抗生素具有抗性。但是,单突变体酶略有缺陷,IMP-1S115T由于酶活性降低而IMP-1-S119G由于热稳定性和表达降低而缺失,而双突变体则没有这些缺陷。 (4)结论:这些观察结果表明获得S119G的原因在于其酶活性的提高以及S115T抑制了S119G引入的热稳定性和表达缺陷。

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