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化脓性链球菌大环内酯类耐药中,msr(D)相对于mef(A)/mef(E)的功能优势,与mef(A)相关时比与mef(E)相关时更有效。

Functional Predominance of msr(D), Which Is More Effective as mef(A)-Associated Than mef(E)-Associated, Over mef(A)/mef(E) in Macrolide Resistance in Streptococcus pyogenes.

作者信息

Tatsuno Ichiro, Isaka Masanori, Masuno Katsuaki, Hata Nanako, Matsumoto Masakado, Hasegawa Tadao

机构信息

1 Department of Bacteriology, Nagoya City University Graduate School of Medical Sciences , Nagoya, Japan .

2 Nagoya City Public Health Research Institute , Nagoya, Japan .

出版信息

Microb Drug Resist. 2018 Oct;24(8):1089-1097. doi: 10.1089/mdr.2017.0277. Epub 2018 Feb 6.

Abstract

Although mef(A) and its subclass mef(E) genes have long been considered to play a central role in macrolide efflux-based resistance, we have previously demonstrated that the msr(D) gene located immediately downstream of the mef(A) gene plays a predominant role in Streptococcus pyogenes macrolide resistance. The mef(A) and mef(E) genes are carried by different genetic elements and the resistance associated with mef(A) was reported to be higher than that associated with mef(E); therefore, we further investigated the functional relevance of mef(A)/mef(E) and its associated msr(D). We established additional mef(A)-, mef(E)-, and their associated msr(D)-knockout strains and confirmed the predominance of msr(D) over mef(A)/mef(E). In addition, we performed experiments introducing mef(A), mef(E), and their associated msr(D) genes into mef(A)/mef(E)-msr(D) double-knockout and mef(A)/mef(E) negative strains. Neither mef(A) nor mef(E) genes had effects on erythromycin resistance. However, both associated msr(D) showed significant effects, and the mef(A)-associated msr(D) exhibited more effect than the mef(E)-associated one. These results suggest that an overall functional predominance of msr(D) over mef(A)/mef(E) is conceivable in efflux-based macrolide resistance in at least some S. pyogenes strains. Furthermore, the higher resistance of mef(A) system over mef(E) system could be derived at least in part from functional differences of mef(A)- and mef(E)-associated msr(D).

摘要

尽管长期以来人们一直认为mef(A)及其亚类mef(E)基因在基于大环内酯外排的耐药性中起核心作用,但我们之前已经证明,位于mef(A)基因紧邻下游的msr(D)基因在化脓性链球菌大环内酯耐药性中起主要作用。mef(A)和mef(E)基因由不同的遗传元件携带,据报道与mef(A)相关的耐药性高于与mef(E)相关的耐药性;因此,我们进一步研究了mef(A)/mef(E)及其相关的msr(D)的功能相关性。我们构建了额外的mef(A)、mef(E)及其相关的msr(D)基因敲除菌株,并证实了msr(D)相对于mef(A)/mef(E)的优势。此外,我们进行了将mef(A)、mef(E)及其相关的msr(D)基因导入mef(A)/mef(E)-msr(D)双敲除菌株和mef(A)/mef(E)阴性菌株的实验。mef(A)和mef(E)基因对红霉素耐药性均无影响。然而,两者相关的msr(D)均显示出显著影响,且与mef(A)相关的msr(D)比与mef(E)相关的msr(D)表现出更强的影响。这些结果表明,在至少一些化脓性链球菌菌株中,基于外排的大环内酯耐药性中msr(D)相对于mef(A)/mef(E)在整体功能上占优势是可以想象的。此外,mef(A)系统相对于mef(E)系统的更高耐药性可能至少部分源于与mef(A)和mef(E)相关的msr(D)的功能差异。

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