Newton Salete M C, Klebba Phillip E, Raynaud Catherine, Shao Yi, Jiang Xiaoxu, Dubail Iharilalao, Archer Crystal, Frehel Claude, Charbit Alain
INSERM U-570, CHU Necker, Enfants Malades, 156, rue de Vaugirard, 75730 Paris Cedex 15, France.
Mol Microbiol. 2005 Feb;55(3):927-40. doi: 10.1111/j.1365-2958.2004.04436.x.
In Listeria monocytogenes the promoter region of the svpA-srtB locus contains a well-conserved Fur box. We characterized the iron-regulation of this locus: real-time polymerase chain reaction analyses and anti-SvpA immunoblots showed that, in response to iron deprivation svpA transcription and SvpA production markedly increased (80-fold and 10-fold respectively), when initiated by either the addition of the iron chelator 2,2'-bipyridyl to BHI media, or by growth in iron-restricted minimal media. Green fluorescent protein (GFP) reporter constructs also showed increased activity of the svpA-srtB promoter in Escherichia coli (37-fold) and in L. monocytogenes (two- to threefold) when the bacteria were grown in iron-deficient conditions. A Deltafur mutant of L. monocytogenes constitutively synthesized SvpA, as well as GFP fused to the svpA-srtB promoter. Cellular fractionation data revealed that in iron-rich media wild-type SvpA was exclusively secreted to the culture supernatant. However, both the Deltafur derivative and wild-type L. monocytogenes grown in iron-deficient media anchored a fraction of the SvpA proteins (approximately 5%) to peptidoglycan, and produced a lower-molecular weight, wholly secreted form of SvpA. Together these data establish that iron availability controls transcription of the svpA-srtB locus (through Fur-mediated regulation), and attachment of SvpA to the cell wall (through SrtB-mediated covalent linkage). SvpA bears homology to IsdC, a haemin-binding protein of Staphylococcus aureus, and haemin bound to SvpA in solution. However, site-directed deletions of four structural genes and the promoter of the svpA-srtB locus did not impair haemin, haemoglobin or ferrichrome utilization in nutrition tests. We did not find strong evidence to support the notion that the svpA-srtB locus participates in haemin acquisition, as was reported for the homologous isd operon of S. aureus. Furthermore, the svpA-srtB mutant strains showed no significant attenuation of virulence in an intravenous mouse model system, but we found that the mutations reduced the persistence of L. monocytogenes in murine liver, spleen and intestines after oral administration.
在单核细胞增生李斯特菌中,svpA-srtB基因座的启动子区域包含一个保守性良好的铁摄取调节蛋白(Fur)结合框。我们对该基因座的铁调节进行了表征:实时聚合酶链反应分析和抗SvpA免疫印迹显示,当通过向脑心浸液(BHI)培养基中添加铁螯合剂2,2'-联吡啶,或在铁限制的基本培养基中生长来引发缺铁时,svpA转录和SvpA产生显著增加(分别增加80倍和10倍)。绿色荧光蛋白(GFP)报告基因构建体还显示,当细菌在缺铁条件下生长时,svpA-srtB启动子在大肠杆菌(增加37倍)和单核细胞增生李斯特菌(增加两到三倍)中的活性增强。单核细胞增生李斯特菌的Fur缺失突变体组成型合成SvpA,以及与svpA-srtB启动子融合的GFP。细胞分级分离数据显示,在富含铁的培养基中,野生型SvpA仅分泌到培养上清液中。然而,Fur缺失衍生物和在缺铁培养基中生长的野生型单核细胞增生李斯特菌都将一部分SvpA蛋白(约5%)锚定在肽聚糖上,并产生一种分子量较低、完全分泌形式的SvpA。这些数据共同表明,铁的可用性控制svpA-srtB基因座的转录(通过Fur介导的调节)以及SvpA与细胞壁的附着(通过Sortase B介导的共价连接)。SvpA与金黄色葡萄球菌的血红素结合蛋白IsdC具有同源性,并且血红素在溶液中与SvpA结合。然而,svpA-srtB基因座的四个结构基因和启动子的定点缺失在营养测试中并未损害血红素、血红蛋白或高铁色素的利用。我们没有找到有力证据支持svpA-srtB基因座参与血红素获取的观点,正如金黄色葡萄球菌同源的isd操纵子所报道的那样。此外,svpA-srtB突变株在静脉注射小鼠模型系统中未显示出明显的毒力减弱,但我们发现这些突变降低了口服给药后单核细胞增生李斯特菌在小鼠肝脏、脾脏和肠道中的持久性。