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新型四环素有抗药性基因 tet(65)位于一个多抗性棒状杆菌质粒上。

Novel tetracycline resistance gene tet(65) located on a multi-resistance Corynebacterium plasmid.

机构信息

Institute of Veterinary Bacteriology, Vetsuisse Faculty, University of Bern, Bern, Switzerland.

出版信息

J Antimicrob Chemother. 2024 May 2;79(5):1023-1029. doi: 10.1093/jac/dkae066.

Abstract

BACKGROUND

Corynebacterium (C.) sp. 22KM0430 related to C. oculi and isolated from a dog exhibited resistance to tetracycline, and its WGS analysis revealed a putative resistance gene on a 35 562-bp plasmid also harbouring the MLSB resistance gene erm(X).

OBJECTIVES

To characterize the novel tetracycline resistance gene tet(65) and demonstrate its functionality by expression in C. glutamicum and Escherichia coli and plasmid curing of the host strain.

METHODS

tet(65) was cloned with and without its repressor tetR(65) and expressed in C. glutamicum DSM20300 and E. coli DH5α. Plasmid was cured by non-selective passages. Minimal inhibitory concentrations (MICs) of tetracyclines were determined according to CLSI guidelines. Association of tet(65) with efflux was shown by the addition of reserpine to MIC assays. Phylogenetic position and transmembrane structure of Tet(65) were analysed using MEGA11 and DeepTMHMM.

RESULTS

Tet(65) shows 73% amino acid identity with the closest related Tet(Z), contains 12 transmembrane domains and is structurally related to the Major Facilitator Superfamily. The tetracycline MICs decreased in the plasmid-cured strain and increased when tet(65) was expressed in C. glutamicum and in E. coli. The MICs of tetracycline decreased in the presence of reserpine indicating that tet(65) functions as an efflux pump. A GenBank search also identified tet(65) in C. diphtheriae and Brevibacterium (B.) casei and B. luteolum.

CONCLUSIONS

A novel tetracycline efflux gene tet(65) was identified in a C. oculi related species and was also present in the human pathogen C. diphtheriae and in Brevibacterium species indicating broader potential for dissemination.

摘要

背景

与眼结膜相关的棒状杆菌(Corynebacterium)22KM0430 株对四环素表现出耐药性,其全基因组序列分析显示,一个 35562bp 的质粒上存在一个假定的耐药基因,该质粒还携带 MLSB 耐药基因 erm(X)。

目的

对新型四环素耐药基因 tet(65)进行鉴定,并通过在谷氨酸棒状杆菌 DSM20300 和大肠杆菌 DH5α中的表达以及宿主菌的质粒消除来证明其功能。

方法

克隆了带有和不带有其抑制剂 tetR(65)的 tet(65),并在谷氨酸棒状杆菌 DSM20300 和大肠杆菌 DH5α中进行了表达。通过非选择性传代消除质粒。根据 CLSI 指南测定四环素的最小抑菌浓度(MIC)。通过在 MIC 测定中加入利血平来显示 tet(65)与外排的关联。使用 MEGA11 和 DeepTMHMM 分析 Tet(65)的系统发育位置和跨膜结构。

结果

Tet(65)与最接近的 Tet(Z)具有 73%的氨基酸同一性,包含 12 个跨膜结构域,在结构上与主要易化剂超家族相关。在质粒消除的菌株中,四环素的 MIC 降低,当 tet(65)在谷氨酸棒状杆菌和大肠杆菌中表达时,MIC 增加。在利血平存在的情况下,四环素的 MIC 降低,表明 tet(65)作为外排泵发挥作用。在 GenBank 搜索中还在白喉棒状杆菌和短杆菌(Brevibacterium)属的棒状杆菌和短杆菌属的短杆菌中鉴定出了 tet(65)。

结论

在与眼结膜相关的棒状杆菌种中发现了一种新型四环素外排基因 tet(65),它也存在于人类病原体白喉棒状杆菌和短杆菌属中,表明其传播的潜力更大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4f1/11062942/c0405a42e662/dkae066f1.jpg

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