Institute for Medical Microbiology, Justus-Liebig-University, Frankfurter Str. 107, Giessen, Germany.
Infect Immun. 2010 Jul;78(7):3306-14. doi: 10.1128/IAI.00210-10. Epub 2010 May 3.
The acquisition of iron during the infection process is essential for the growth of pathogenic microorganisms (S. C. Andrews, Adv. Microb. Physiol. 40:281-351, 1998; H. M. Baker, B. F. Anderson, and E. N. Baker, Proc. Natl. Acad. Sci. U. S. A. 100:3579-3583, 2003). Since the solubility of iron is low and it is toxic at low concentrations, following uptake, iron is stored in subcellular microenvironments in the iron storage protein ferritin (C. Cheers and M. Ho, J. Reticuloendothel. Soc. 34:299-309, 1983). Here, we show that ferritin-like proteins (Frl) are highly conserved in the genus Listeria and demonstrate that these proteins are present in both the cytoplasm and cell wall fractions of these bacteria. Even though Frl is expressed under different growth conditions, transcriptional mapping revealed that its regulation is complex. When bacteria are grown in brain heart infusion medium, extracellular expression involves both sigma A (SigA)- and sigma B (SigB)-dependent promoters; however, during intracellular growth, initiation of transcription is additionally SigB dependent. The expression of Frl is greatly enhanced in bacteria grown in the presence of blood, and a mutant strain lacking the frl gene was defective for growth in this medium. Using the monoclonal antibody (MAb) specific for Frl, we demonstrate that administration of anti-Frl MAb prior to infection confers antilisterial resistance in vivo, evidenced in reduced bacterial load and increased survival rates, thereby demonstrating the in vivo significance of upregulated cell surface-associated Frl expression. In vitro studies revealed that the antilisterial resistance is due to increased listerial phagocytosis.
在感染过程中获取铁对于病原微生物的生长是必不可少的(S.C.安德鲁斯,Adv.Microb.Physiol.40:281-351,1998;H.M.贝克,B.F.安德森和 E.N.贝克,Proc.Natl.Acad.Sci.U.S.A.100:3579-3583,2003)。由于铁的溶解度低且在低浓度下具有毒性,因此在摄取后,铁被储存在铁储存蛋白铁蛋白的亚细胞微环境中(C.Cheers 和 M.Ho,J.Reticuloendothel.Soc.34:299-309,1983)。在这里,我们表明铁蛋白样蛋白(Frl)在李斯特菌属中高度保守,并证明这些蛋白存在于这些细菌的细胞质和细胞壁部分中。尽管 Frl 在不同的生长条件下表达,但转录图谱显示其调控非常复杂。当细菌在脑心浸液培养基中生长时,细胞外表达涉及 sigma A(SigA)和 sigma B(SigB)依赖性启动子;然而,在细胞内生长过程中,转录起始另外依赖 SigB。在含有血液的细菌中生长时,Frl 的表达大大增强,缺乏 frl 基因的突变株在该培养基中生长不良。使用针对 Frl 的单克隆抗体(MAb),我们证明在感染前给予抗 Frl MAb 可在体内赋予抗李斯特菌抗性,这表现为细菌载量减少和存活率提高,从而证明了上调细胞表面相关 Frl 表达的体内意义。体外研究表明,抗李斯特菌抗性是由于李斯特菌吞噬作用增加所致。