Danese Isabelle, Haine Valerie, Delrue Rose-May, Tibor Anne, Lestrate Pascal, Stevaux Olivier, Mertens Pascal, Paquet Jean-Yves, Godfroid Jacques, De Bolle Xavier, Letesson Jean-Jacques
Unité de Recherche en Biologie Moléculaire, University of Namur, Belgium.
Infect Immun. 2004 Oct;72(10):5783-90. doi: 10.1128/IAI.72.10.5783-5790.2004.
Brucella spp. are gram-negative intracellular facultative pathogens that are known to produce 2,3-dihydroxybenzoic acid (DHBA), a catechol siderophore that is essential for full virulence in the natural host. The mechanism of DHBA entry into Brucella and other gram-negative bacteria is poorly understood. Using mini-Tn5Kmcat mutagenesis, we created a transposon library of Brucella melitensis 16M and isolated 32 mutants with a defect in iron acquisition or assimilation. Three of these transposon mutants are deficient in utilization of DHBA. Analysis of these three mutants indicated that the ExbB, DstC, and DugA proteins are required for optimal assimilation of DHBA and/or citrate. ExbB is part of the Ton complex, and DstC is a permease homologue of an iron(III) ABC transporter; in gram-negative bacteria these two complexes are involved in the uptake of iron through the outer and inner membranes, respectively. DugA is a new partner in iron utilization that exhibits homology with the bacterial conserved GTPase YchF. Based on this homology, DugA could have a putative regulatory function in iron assimilation in Brucella. None of the three mutants was attenuated in cellular models or in the mouse model of infection, which is consistent with the previous suggestion that DHBA utilization is not required in these models.
布鲁氏菌属是革兰氏阴性胞内兼性病原菌,已知其能产生2,3 - 二羟基苯甲酸(DHBA),一种儿茶酚铁载体,对自然宿主中的完全毒力至关重要。DHBA进入布鲁氏菌及其他革兰氏阴性菌的机制尚不清楚。我们利用mini - Tn5Kmcat诱变技术构建了羊种布鲁氏菌16M的转座子文库,并分离出32个铁获取或同化存在缺陷的突变体。其中三个转座子突变体在DHBA利用方面存在缺陷。对这三个突变体的分析表明,ExbB、DstC和DugA蛋白是DHBA和/或柠檬酸盐最佳同化所必需的。ExbB是托恩复合体的一部分,DstC是铁(III)ABC转运蛋白的通透酶同源物;在革兰氏阴性菌中,这两个复合体分别参与铁通过外膜和内膜的摄取。DugA是铁利用中的一个新伙伴,与细菌保守的GTP酶YchF具有同源性。基于这种同源性,DugA可能在布鲁氏菌的铁同化中具有推定的调节功能。这三个突变体在细胞模型或感染小鼠模型中均未减毒,这与之前关于这些模型中不需要DHBA利用的观点一致。