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四环素和外排泵抑制剂的检测

Detection of tetracyclines and efflux pump inhibitors.

作者信息

Rothstein D M, McGlynn M, Bernan V, McGahren J, Zaccardi J, Cekleniak N, Bertrand K P

机构信息

Medical Research Division, Lederle Laboratories, Pearl River, New York 10965.

出版信息

Antimicrob Agents Chemother. 1993 Aug;37(8):1624-9. doi: 10.1128/AAC.37.8.1624.

Abstract

Screening assays for the detection of tetracyclines and inhibitors of tetracycline efflux pumps are described. The tetracycline assay is based on the observation that the tetA(B) gene encoding the efflux pump of transposon Tn10 is induced by tetracycline. The Escherichia coli strain designed to detect tetracyclines contains a single copy of a tetA(B)-lacZ transcriptional fusion integrated into the chromosome and the tetR gene encoding the tetracycline repressor on a plasmid. The assay specifically detects tetracyclines of distinct structures, but not other classes of drugs. A strain capable of detecting inhibitors of the TetA(B) efflux pump contained the tetA(B)-lacZ fusion and, in addition, a tetA(B) structural gene lacking its transcriptional regulatory signals which mediated resistance to only 5 micrograms of tetracycline per ml. This strain was more refractory to induction by tetracycline because of the action of the pump. Inhibitors were detected in two ways: (i) beta-galactosidase induction in the presence of 5 ng of tetracycline per ml, a subinducing concentration, and (ii) growth inhibition in the presence of 5 micrograms of tetracycline per ml. A strain designed to detect inhibitors of the Tet(K) efflux pump from Staphylococcus aureus was constructed by substituting the tet(K) structural gene for the tetA(B) gene. Nocardamine and other siderophores were found to interfere with the action of tetracycline efflux pumps.

摘要

本文描述了用于检测四环素及四环素外排泵抑制剂的筛选试验。四环素试验基于以下观察结果:编码转座子Tn10外排泵的tetA(B)基因可被四环素诱导。设计用于检测四环素的大肠杆菌菌株含有一个整合到染色体上的tetA(B)-lacZ转录融合单拷贝,以及一个位于质粒上编码四环素阻遏物的tetR基因。该试验可特异性检测不同结构的四环素,但不能检测其他类别的药物。一种能够检测TetA(B)外排泵抑制剂的菌株含有tetA(B)-lacZ融合基因,此外,还有一个缺少转录调控信号的tetA(B)结构基因,该基因介导对每毫升仅5微克四环素的抗性。由于该泵的作用,该菌株对四环素诱导更具抗性。抑制剂可通过两种方式检测:(i) 在每毫升5纳克四环素(亚诱导浓度)存在下β-半乳糖苷酶诱导;(ii) 在每毫升5微克四环素存在下生长抑制。通过用tet(K)结构基因替换tetA(B)基因构建了一种设计用于检测金黄色葡萄球菌Tet(K)外排泵抑制剂的菌株。发现诺卡胺和其他铁载体可干扰四环素外排泵的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87ff/188031/4fc0021d38df/aac00030-0082-a.jpg

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