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首页> 外文期刊>Infection and immunity >Major Role for FeoB in Campylobacter jejuni Ferrous Iron Acquisition, Gut Colonization, and Intracellular Survival
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Major Role for FeoB in Campylobacter jejuni Ferrous Iron Acquisition, Gut Colonization, and Intracellular Survival

机译:FeoB在空肠弯曲杆菌中铁的获得,肠道定植和细胞内存活中的主要作用

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To assess the importance of ferrous iron acquisition in Campylobacter physiology and pathogenesis, we disrupted and characterized the Fe2+ iron transporter, FeoB, in Campylobacter jejuni NCTC 11168, 81-176, and ATCC 43431. The feoB mutant was significantly affected in its ability to transport 55Fe2+. It accumulated half the amount of iron than the wild-type strain during growth in an iron-containing medium. The intracellular iron of the feoB mutant was localized in the periplasmic space versus the cytoplasm for the wild-type strain. These results indicate that the feoB gene of C. jejuni encodes a functional ferrous iron transport system. Reverse transcriptase PCR analysis revealed the cotranscription of feoB and Cj1397, which encodes a homolog of Escherichia coli feoA. C. jejuni 81-176 feoB mutants exhibited reduced ability to persist in human INT-407 embryonic intestinal cells and porcine IPEC-1 small intestinal epithelial cells compared to the wild type. C. jejuni NCTC 11168 feoB mutant was outcompeted by the wild type for colonization and/or survival in the rabbit ileal loop. The feoB mutants of the three C. jejuni strains were significantly affected in their ability to colonize the chick cecum. And finally, the three feoB mutants were outcompeted by their respective wild-type strains for infection of the intestinal tracts of colostrum-deprived piglets. Taken together, these results demonstrate that FeoB-mediated ferrous iron acquisition contributes significantly to colonization of the gastrointestinal tract during both commensal and infectious relationship, and thus it plays an important role in Campylobacter pathogenesis.
机译:为了评估亚铁的捕获在弯曲杆菌的生理和发病机理中的重要性,我们中断了空肠弯曲杆菌中的Fe 2 + 铁转运体FeoB,并对其进行了表征。 > NCTC 11168、81-176和ATCC43431。 feoB 突变体的转运 55 Fe 2 + 的能力受到显着影响。在含铁培养基中生长期间,它比野生型菌株积累了一半的铁。与野生型菌株的胞质相比, feoB 突变体的胞内铁位于胞质空间。这些结果表明 C的 feoB 基因。空肠编码一个功能性的铁运输系统。逆转录酶PCR分析显示了 feoB 和Cj1397的共转录,其编码大肠杆菌feoA的同源物。与野生型相比,空肠弯曲菌81-176 feoB 突变体在人INT-407胚胎肠细胞和猪IPEC-1小肠上皮细胞中的持久性降低。 C。空肠NCTC 11168 feoB 突变体在野兔回肠环中的定殖和/或生存能力优于野生型。三个 C的 feoB 突变体。空肠菌株定殖在盲肠盲肠的能力受到显着影响。最后,三个 feoB 突变体因感染初乳剥夺的仔猪的肠道而与它们各自的野生型菌株竞争。综上所述,这些结果表明,FeoB介导的亚铁的摄取在共鸣和传染关系中都对胃肠道的定植有显着贡献,因此在<弯曲菌>弯曲杆菌的发病机理中起着重要的作用。

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