Section of Molecular Genetics and Microbiology, University of Texas, Austin, Texas, USA.
J Bacteriol. 2013 Nov;195(21):4826-35. doi: 10.1128/JB.00738-13. Epub 2013 Aug 16.
The ferrous iron transport system Feo is widely distributed among bacterial species, yet its physical structure and mechanism of iron transport are poorly understood. In Vibrio cholerae, the feo operon consists of three genes, feoABC. feoB encodes an 83-kDa protein with an amino-terminal GTPase domain and a carboxy-terminal domain predicted to be embedded in the inner membrane. While FeoB is believed to form the pore for iron transport, the roles of FeoA and FeoC are unknown. In this work, we show that FeoA and FeoC, as well as the more highly conserved FeoB, are all required for iron acquisition by V. cholerae Feo. An in-frame deletion of feoA, feoB, or feoC eliminated iron acquisition. The loss of transport activity in the feoA and feoC mutants was not due to reduced transcription of the feo operon, suggesting that these two small proteins are required for activity of the transporter. feoC was found to encode a protein that interacts with the cytoplasmic domain of FeoB, as determined using the BACTH bacterial two-hybrid system. Two conserved amino acids in FeoC were found to be necessary for the interaction with FeoB in the two-hybrid assay, and when either of these amino acids was mutated in the context of the entire feo operon, iron acquisition via Feo was reduced. No interaction of FeoA with FeoB or FeoC was detected in the BACTH two-hybrid assay.
亚铁转运系统 Feo 在细菌物种中广泛分布,但它的物理结构和铁转运机制仍不清楚。在霍乱弧菌中,feo 操纵子由三个基因 feoABC 组成。feoB 编码一个 83kDa 的蛋白质,其氨基端具有 GTP 酶结构域,羧基端结构域预测嵌入内膜。虽然 FeoB 被认为形成了铁运输的孔道,但 FeoA 和 FeoC 的作用尚不清楚。在这项工作中,我们表明 FeoA 和 FeoC 以及更为保守的 FeoB 都需要铁摄取,霍乱弧菌 Feo 才能摄取铁。FeoA、FeoB 或 feoC 的框内缺失消除了铁的摄取。FeoA 和 feoC 突变体中转运活性的丧失不是由于 feo 操纵子转录减少所致,这表明这两个小蛋白是转运体活性所必需的。使用 BACTH 细菌双杂交系统确定,FeoC 编码与 FeoB 细胞质结构域相互作用的蛋白质。在双杂交测定中,FeoC 中的两个保守氨基酸对于与 FeoB 的相互作用是必需的,并且当这两个氨基酸之一在整个 feo 操纵子的背景下发生突变时,通过 Feo 进行的铁摄取减少。在 BACTH 双杂交测定中未检测到 FeoA 与 FeoB 或 FeoC 的相互作用。