Louvel Hélène, Saint Girons Isabelle, Picardeau Mathieu
Laboratoire des Spirochètes, Institut Pasteur, 28 rue du docteur Roux, 75724 Paris Cedex 15, France.
J Bacteriol. 2005 May;187(9):3249-54. doi: 10.1128/JB.187.9.3249-3254.2005.
The specific mechanisms by which Leptospira spp. acquire iron from their ecological niches are unknown. A major factor contributing to our ignorance of spirochetal biology is the lack of methods for genetic analysis of these organisms. In this study, we have developed a system for random transposon mutagenesis of Leptospira biflexa using a mariner transposon, Himar1. To demonstrate the validity of Himar1 in vivo transposon mutagenesis in L. biflexa, a screen of mutants for clones impaired in amino acid biosynthesis was first performed, enabling the identification of tryptophan and glutamate auxotrophs. To investigate iron transporters, 2,000 L. biflexa transposon mutants were screened onto media with and without hemin, thus allowing the identification of five hemin-requiring mutants, and the putative genes responsible for this phenotype were identified. Three mutants had distinct insertions in a gene encoding a protein which shares homology with the TonB-dependent receptor FecA, involved in ferric citrate transport. We also identified two mutants with a Himar1 insertion into a feoB-like gene, the product of which is required for ferrous iron uptake in many bacterial organisms. Interestingly, the growth inhibition exhibited by the fecA and feoB mutants was relieved by deferoxamine, suggesting the presence of a ferric hydroxamate transporter. These results confirm the importance of iron for the growth of Leptospira and its ability to use multiple iron sources.
钩端螺旋体属从其生态位获取铁的具体机制尚不清楚。导致我们对螺旋体生物学缺乏了解的一个主要因素是缺乏对这些生物体进行遗传分析的方法。在本研究中,我们利用水手转座子Himar1开发了一种用于双曲钩端螺旋体随机转座子诱变的系统。为了证明Himar1在双曲钩端螺旋体体内转座子诱变中的有效性,首先对氨基酸生物合成受损的克隆突变体进行了筛选,从而鉴定出色氨酸和谷氨酸营养缺陷型。为了研究铁转运蛋白,将2000个双曲钩端螺旋体转座子突变体筛选到添加和不添加血红素的培养基上,从而鉴定出5个需要血红素的突变体,并确定了导致该表型的推定基因。三个突变体在一个编码与参与柠檬酸铁转运的TonB依赖性受体FecA具有同源性的蛋白质的基因中具有不同的插入。我们还鉴定出两个Himar1插入到类feoB基因中的突变体,该基因的产物是许多细菌生物体中铁摄取所必需的。有趣的是,去铁胺可缓解fecA和feoB突变体表现出的生长抑制,这表明存在一种高铁羟肟酸盐转运蛋白。这些结果证实了铁对钩端螺旋体生长的重要性及其利用多种铁源的能力。