Hao Min, Ye Meiping, Shen Zhen, Hu Fupin, Yang Yang, Wu Shi, Xu Xiaogang, Zhu Sihui, Qin Xiaohua, Wang Minggui
1 Institute of Antibiotics, Huashan Hospital, Fudan University , Shanghai, People's Republic of China .
2 Key Laboratory of Clinical Pharmacology of Antibiotics , Ministry of Health, Shanghai, People's Republic of China .
Microb Drug Resist. 2018 Nov;24(9):1277-1283. doi: 10.1089/mdr.2017.0379. Epub 2018 Mar 13.
The more frequent reports of carbapenem-resistant Enterobacteriaceae have raised the alarm for public health. Apart from the production of carbapenemases, deficiency (decreased or loss of expression) of outer membrane proteins (OMPs) has been proposed as a potentially important mechanism of carbapenem resistance. The aim of the present study was to evaluate the contribution of the major OMPs to carbapenem resistance in Enterobacter aerogenes (CREA) isolates and also investigate the role of small RNAs (sRNAs) in inducing porin-associated permeability defects.
The differential expression of OMPs was analyzed in four clinical CREA isolates. omp35 and omp36 genes were further investigated by whole-genome sequencing, induction of meropenem resistance, sRNA overexpression, OMP complementation assays, and reverse transcription-quantitative PCR.
All four isolates examined were deficient in omp35 and omp36. Functional restoration of these two genes confirmed their contribution to carbapenem resistance. The meropenem induction assay further revealed that porin deficiency plays a role in carbapenem resistance under antibiotic selection pressure. Single-point mutations in omp36 leading to premature stop codons were detected in two of the isolates. Elevated expression levels of the sRNAs micF and micC were detected in the other two porin-deficient isolates, which were predicted to be potential porin regulators from whole-genome sequencing. Overexpression of micF and micC downregulated the expression of Omp35 and Omp36, respectively.
Porin deficiency plays an important role in carbapenem resistance among clinical E. aerogenes isolates under regulation of the sRNAs micC and micF. Furthermore, overexpression of micC and micF had a minor to no impact on carbapenem minimum inhibitory concentrations, and thus, the regulatory mechanism is likely to be complex.
耐碳青霉烯类肠杆菌科细菌报告日益频繁,为公共卫生敲响了警钟。除了碳青霉烯酶的产生外,外膜蛋白(OMPs)缺陷(表达降低或丧失)被认为是耐碳青霉烯的潜在重要机制。本研究旨在评估主要OMPs对产气肠杆菌(CREA)分离株耐碳青霉烯的作用,并研究小RNA(sRNAs)在诱导孔蛋白相关通透性缺陷中的作用。
分析了4株临床CREA分离株中OMPs的差异表达。通过全基因组测序、美罗培南耐药诱导、sRNA过表达、OMP互补分析和逆转录定量PCR进一步研究omp35和omp36基因。
所有检测的4株分离株均存在omp35和omp36缺陷。这两个基因的功能恢复证实了它们对耐碳青霉烯的作用。美罗培南诱导试验进一步表明,在抗生素选择压力下,孔蛋白缺陷在耐碳青霉烯中起作用。在其中2株分离株中检测到omp36的单点突变导致过早终止密码子。在另外2株孔蛋白缺陷分离株中检测到sRNAs micF和micC的表达水平升高,全基因组测序预测它们可能是潜在的孔蛋白调节因子。micF和micC的过表达分别下调了Omp35和Omp36的表达。
在sRNAs micC和micF的调控下,孔蛋白缺陷在临床产气肠杆菌分离株耐碳青霉烯中起重要作用。此外,micC和micF的过表达对碳青霉烯最低抑菌浓度影响较小或无影响,因此,调控机制可能很复杂。