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烯醇化酶与淋球菌对头孢曲松耐受性的产生有关。

Enolase Is Implicated in the Emergence of Gonococcal Tolerance to Ceftriaxone.

作者信息

Manoharan-Basil Sheeba Santhini, Balduck Margaux, Abdellati Saïd, Gestels Zina, de Block Tessa, Kenyon Chris

机构信息

HIV/STI Unit, Department of Clinical Sciences, Institute of Tropical Medicine Antwerp, 2000 Antwerp, Belgium.

Clinical Reference Laboratory, Department of Clinical Sciences, Institute of Tropical Medicine, 2000 Antwerp, Belgium.

出版信息

Antibiotics (Basel). 2023 Mar 7;12(3):534. doi: 10.3390/antibiotics12030534.

Abstract

Antibiotic tolerance is associated with antibiotic treatment failure, and molecular mechanisms underlying tolerance are poorly understood. We recently succeeded in inducing tolerance to ceftriaxone (CRO) in an reference isolate. In a prior in vitro study, six biological replicates of WHO P strains were exposed to CRO (10× the MIC) followed by overnight growth, and tolerance was assessed using a modified Tolerance Disc (T.D.) test. In the current study, we characterized the mutation profile of these CRO-tolerant phenotypes. The whole genome was sequenced from isolates from different replicates and time points. We identified mutations in four genes that may contribute to ceftriaxone tolerance in , including a mutation in the enolase () gene that arose independently in three lineages.

摘要

抗生素耐受性与抗生素治疗失败有关,而耐受性背后的分子机制尚不清楚。我们最近成功地在一株参考菌株中诱导出对头孢曲松(CRO)的耐受性。在之前的一项体外研究中,将世界卫生组织P菌株的六个生物学重复样本暴露于CRO(10倍MIC)下,然后过夜培养,并使用改良的耐受性圆盘(T.D.)试验评估耐受性。在当前研究中,我们对这些CRO耐受性表型的突变谱进行了表征。对来自不同重复样本和时间点的分离株进行了全基因组测序。我们在四个基因中鉴定出可能导致对头孢曲松耐受性的突变,其中包括烯醇化酶(eno)基因中的一个突变,该突变在三个谱系中独立出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89ed/10044683/ec911f18dd01/antibiotics-12-00534-g001.jpg

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