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TonB1和TonB2蛋白在鸭疫里默氏菌获取血红素铁及毒力中的作用

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

作者信息

Miao Shuang, Xing Linlin, Qi Jingjing, Yu Hui, Jiang Pan, Sun Bingqing, Cui Junsheng, Ou Changcan, Hu Qinghai

机构信息

Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, 518 Ziyue Road, Shanghai 200241, PR China.

出版信息

Microbiology (Reading). 2015 Aug;161(8):1592-1599. doi: 10.1099/mic.0.000123.

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.

摘要

在鸭疫里默氏菌中发现了两个托敏B系统,分别鉴定为ExbB1-ExbD1-TonB1和ExbB2-ExbD2-ExbD2'-TonB2,但这两组托敏B复合物在鸭疫里默氏菌中的意义尚不清楚。在本研究中,通过缺失鸭疫里默氏菌CH3菌株的tonB1或tonB2基因,我们研究了托敏B1和托敏B2蛋白在铁摄取和毒力中的作用。结果表明,在L-半胱氨酸存在的情况下,CH3菌株可以利用血红素作为唯一的铁源,但CH3ΔtonB1突变体的血红素铁摄取存在缺陷,并且tonB1或tonB2的缺失均显著降低了对Vero细胞的粘附和侵袭。动物实验表明,CH3ΔtonB1和CH3ΔtonB2突变体在雏鸭中的半数致死量分别比野生型CH3菌株高约224倍和约87倍。进一步分析表明,与野生型CH3感染的雏鸭相比,感染CH3ΔtonB1或CH3ΔtonB2的雏鸭血液中的细菌载量显著降低。因此,我们的结果表明,托敏B1蛋白而非托敏B2蛋白参与血红素铁的摄取,并且两种托敏B蛋白对于最佳细菌毒力都是必需的。

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