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整合子盒中原核生物素合成酶基因的表达不受核糖开关的控制。

The expression of aminoglycoside resistance genes in integron cassettes is not controlled by riboswitches.

机构信息

Departamento de Sanidad Animal, Facultad de Veterinaria de la Universidad Complutense de Madrid, Spain.

VISAVET Health Surveillance Centre, Universidad Complutense de Madrid, Spain.

出版信息

Nucleic Acids Res. 2022 Aug 26;50(15):8566-8579. doi: 10.1093/nar/gkac662.

Abstract

Regulation of gene expression is a key factor influencing the success of antimicrobial resistance determinants. A variety of determinants conferring resistance against aminoglycosides (Ag) are commonly found in clinically relevant bacteria, but whether their expression is regulated or not is controversial. The expression of several Ag resistance genes has been reported to be controlled by a riboswitch mechanism encoded in a conserved sequence. Yet this sequence corresponds to the integration site of an integron, a genetic platform that recruits genes of different functions, making the presence of such a riboswitch counterintuitive. We provide, for the first time, experimental evidence against the existence of such Ag-sensing riboswitch. We first tried to reproduce the induction of the well characterized aacA5 gene using its native genetic environment, but were unsuccessful. We then broadened our approach and analyzed the inducibility of all AgR genes encoded in integrons against a variety of antibiotics. We could not observe biologically relevant induction rates for any gene in the presence of several aminoglycosides. Instead, unrelated antibiotics produced mild but consistently higher increases in expression, that were the result of pleiotropic effects. Our findings rule out the riboswitch control of aminoglycoside resistance genes in integrons.

摘要

基因表达调控是影响抗菌药物耐药决定因素成功的关键因素。临床上相关细菌中普遍存在多种对抗氨基糖苷类(Ag)的耐药决定因子,但它们的表达是否受到调控仍存在争议。已有报道称,几种 Ag 耐药基因的表达受编码在保守序列中的核糖体开关机制控制。然而,该序列对应于整合子的整合位点,整合子是一种招募不同功能基因的遗传平台,这使得存在这样的核糖体开关不合常理。我们首次提供了反对这种 Ag 感应核糖体开关存在的实验证据。我们首先尝试使用其天然遗传环境来重现对特征明确的 aacA5 基因的诱导,但未成功。然后,我们拓宽了方法,分析了整合子中编码的所有 AgR 基因对抗生素的诱导能力。在存在几种氨基糖苷类药物的情况下,我们无法观察到任何基因具有生物学相关的诱导率。相反,不相关的抗生素产生了温和但始终更高的表达增加,这是多效性效应的结果。我们的研究结果排除了核糖体开关对整合子中氨基糖苷类耐药基因的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/569c/9410878/b8d9f3d4a6f6/gkac662fig1.jpg

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