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The ABC transporter YejABEF is required for resistance to antimicrobial peptides and the virulence of Brucella melitensis.


ABSTRACT: The ability to resist the killing effects of host antimicrobial peptides (AMPs) plays a vital role in the virulence of pathogens. The Brucella melitensis NI genome has a gene cluster that encodes ABC transport. In this study, we constructed yejA1, yejA2, yejB, yejE, yejF, and whole yej operon deletion mutants, none of which exhibited discernible growth defect in TSB or minimal medium. Unlike their parental strain, the mutants showed a significantly increased sensitivity to acidic stress. The NI?yejE and NI?yejABEF mutants were also more sensitive than B. melitensis NI to polymyxin B, and the expression of yej operon genes was induced by polymyxin B. Moreover, cell and mouse infection assays indicated that NI?yejE and NI?yejABEF have restricted invasion and replication abilities inside macrophages and are rapidly cleared from the spleens of infected mice. These findings indicate that the ABC transporter YejABEF is required for the virulence of Brucella, suggesting that resistance to host antimicrobials is a key mechanism for Brucella to persistently survive in vivo. This study provided insights that led us to further investigate the potential correlation of AMP resistance with the mechanisms of immune escape and persistent infection by pathogens.

SUBMITTER: Wang Z 

PROVIDER: S-EPMC4994006 | biostudies-literature | 2016 Aug

REPOSITORIES: biostudies-literature

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The ABC transporter YejABEF is required for resistance to antimicrobial peptides and the virulence of Brucella melitensis.

Wang Zhen Z   Bie Pengfei P   Cheng Jie J   Lu Lin L   Cui Buyun B   Wu Qingmin Q  

Scientific reports 20160823


The ability to resist the killing effects of host antimicrobial peptides (AMPs) plays a vital role in the virulence of pathogens. The Brucella melitensis NI genome has a gene cluster that encodes ABC transport. In this study, we constructed yejA1, yejA2, yejB, yejE, yejF, and whole yej operon deletion mutants, none of which exhibited discernible growth defect in TSB or minimal medium. Unlike their parental strain, the mutants showed a significantly increased sensitivity to acidic stress. The NIΔ  ...[more]

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