Literature DB >> 26293113

Roles of the TonB1 and TonB2 proteins in haemin iron acquisition and virulence in Riemerella anatipestifer.

Shuang Miao1, Linlin Xing1, Jingjing Qi1, Hui Yu1, Pan Jiang1, Bingqing Sun1, Junsheng Cui1, Changcan Ou1, Qinghai Hu1.   

Abstract

Two TonB systems in Riemerella anatipestifer were found and characterized as ExbB1-ExbD1-TonB1 and ExbB2-ExbD2-ExbD2'-TonB2, but the significance of two sets of TonB complexes in R. anatipestifer is not clear. In this study, by deleting the tonB1 or tonB2 gene of R. anatipestifer strain CH3, we investigated the roles of the TonB1 and TonB2 proteins in iron acquisition and virulence. The results showed that strain CH3 could utilize haemin as the sole iron source in the presence of l-cysteine, but haemin iron acquisition was defective in the CH3ΔtonB1 mutant, and the deletion of either tonB1 or tonB2 significantly reduced adhesion to and invasion of Vero cells. Animal experiments indicated that the LD50 of the CH3ΔtonB1 and CH3ΔtonB2 mutants in ducklings was ∼224- and ∼87-fold, respectively, higher than that of the WT CH3 strain. Additional analysis indicated that blood bacterial loading of ducklings infected with CH3ΔtonB1 or CH3ΔtonB2 decreased significantly compared with that found for WT CH3-infected ducklings. Thus, our results indicated that the TonB1, but not TonB2 protein, is involved in haemin iron acquisition and that both TonB proteins are necessary for optimal bacterial virulence.

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Year:  2015        PMID: 26293113     DOI: 10.1099/mic.0.000123

Source DB:  PubMed          Journal:  Microbiology        ISSN: 1350-0872            Impact factor:   2.777


  6 in total

1.  New Perspectives on Galleria mellonella Larvae as a Host Model Using Riemerella anatipestifer as a Proof of Concept.

Authors:  Mafeng Liu; Mi Huang; Li Huang; Francis Biville; Dekang Zhu; Mingshu Wang; Renyong Jia; Shun Chen; Xinxin Zhao; Qiao Yang; Ying Wu; Shaqiu Zhang; Juan Huang; Bin Tian; Xiaoyue Chen; Yunya Liu; Ling Zhang; Yanling Yu; Leichang Pan; Mujeeb Ur Rehman; Anchun Cheng
Journal:  Infect Immun       Date:  2019-07-23       Impact factor: 3.441

2.  Characterization of the hemolytic activity of Riemerella anatipestifer.

Authors:  Yanshan Gong; Yongsheng Yang; Yan Chen; Bingqing Sun; Yafei Xue; Xinxin Xu; Xi Wang; Nazrul Islam; Xiaoli Du; Qinghai Hu
Journal:  Microbiology (Reading)       Date:  2020-05       Impact factor: 2.777

3.  XRE-Type Regulator BioX Acts as a Negative Transcriptional Factor of Biotin Metabolism in Riemerella anatipestifer.

Authors:  Xiaomei Ren; Zongchao Chen; Pengfei Niu; Wenlong Han; Chan Ding; Shengqing Yu
Journal:  J Bacteriol       Date:  2021-07-08       Impact factor: 3.490

4.  Investigation of TbfA in Riemerella anatipestifer using plasmid-based methods for gene over-expression and knockdown.

Authors:  MaFeng Liu; MengYi Wang; DeKang Zhu; MingShu Wang; RenYong Jia; Shun Chen; KunFeng Sun; Qiao Yang; Ying Wu; XiaoYue Chen; Francis Biville; AnChun Cheng
Journal:  Sci Rep       Date:  2016-11-15       Impact factor: 4.379

5.  Development of a markerless gene deletion strategy using rpsL as a counterselectable marker and characterization of the function of RA0C_1534 in Riemerella anatipestifer ATCC11845 using this strategy.

Authors:  MaFeng Liu; Xiu Tian; MengYi Wang; DeKang Zhu; MingShu Wang; RenYong Jia; Shun Chen; XinXin Zhao; Qiao Yang; Ying Wu; ShaQiu Zhang; Juan Huang; Bin Tian; XiaoYue Chen; YunYa Liu; Ling Zhang; YanLing Yu; Francis Biville; LeiChang Pan; Mujeeb Ur Rehman; AnChun Cheng
Journal:  PLoS One       Date:  2019-06-10       Impact factor: 3.240

6.  First Report of Integrative Conjugative Elements in Riemerella anatipestifer Isolates From Ducks in China.

Authors:  Dekang Zhu; Jianbang Wan; Zhishuang Yang; Jinge Xu; Mingshu Wang; Renyong Jia; Shun Chen; Mafeng Liu; Xinxin Zhao; Qiao Yang; Ying Wu; Shaqiu Zhang; Yunya Liu; Ling Zhang; Yanling Yu; Xiaoyue Chen; Anchun Cheng
Journal:  Front Vet Sci       Date:  2019-04-24
  6 in total

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