Department of Molecular Biology, Division of Biological Sciences, University of California at San Diego, San Diego, California, USA.
Department of Plant Protection, University of Tehran, Tehran, Iran.
J Mol Microbiol Biotechnol. 2019;29(1-6):27-34. doi: 10.1159/000501354. Epub 2019 Sep 11.
The ImpX transporters of the drug/metabolite transporter superfamily were first proposed to transport riboflavin (RF; vitamin B2) based on findings of a cis-regulatory RNA element responding to flavin mononucleotide (an FMN riboswitch). Bdellovibrio exovorous JSS has a homolog belonging to this superfamily. It has 10 TMSs and shows 30% identity to the previously characterized ImpX transporter from Fusobacterium nucleatum. However, the ImpX homolog is not regulated by an FMN-riboswitch. In order to test the putative function of the ImpX homolog from B. exovorous (BexImpX), we cloned and heterologously expressed its gene. We used functional complementation, growth inhibition experiments, direct uptake experiments and inhibition studies, suggesting a high degree of specificity for RF uptake. The EC50 for growth with RF was estimated to be in the range 0.5-1 µM, estimated from the half-maximal RF concentration supporting the growth of a RF auxotrophic Escherichia coli strain, but the Khalf for RF uptake was 20 µM. Transport experiments suggested that the energy source is the proton motive force but that NaCl stimulates uptake. Thus, members of the ImpX family members are capable of RF uptake, not only in RF prototrophic species such as F. nucleatum, but also in the B2 auxotrophic species, B. exovorous.
药物/代谢物转运蛋白超家族的 ImpX 转运蛋白最初是基于对黄素单核苷酸(FMN 核糖开关)反应的顺式调控 RNA 元件的发现,被提出用于转运核黄素(RF;维生素 B2)。噬菌蛭弧菌 JSS 具有属于该超家族的同源物。它有 10 个 TMS,与先前从梭菌属中鉴定出的 ImpX 转运蛋白具有 30%的同一性。然而,ImpX 同源物不受 FMN-核糖开关的调节。为了测试噬菌蛭弧菌 Exovorous 中的 ImpX 同源物(BexImpX)的可能功能,我们克隆并异源表达了其基因。我们使用功能互补、生长抑制实验、直接摄取实验和抑制研究,表明其对 RF 摄取具有高度特异性。用 RF 生长的 EC50 估计在 0.5-1 µM 范围内,根据支持 RF 营养缺陷型大肠杆菌菌株生长的 RF 半最大浓度来估计,但 RF 摄取的 Khalf 为 20 µM。转运实验表明,能量来源是质子动力势,但 NaCl 刺激摄取。因此,ImpX 家族成员能够摄取 RF,不仅在 RF 原养型物种(如 F. 核杆菌)中,而且在 B2 营养缺陷型物种,噬菌蛭弧菌中也是如此。