Department of Public Health, School of Pharmacy, Kitasato University, 5-9-1 Shirokane, Minato-ku, Tokyo 108-8641, Japan.
FEMS Microbiol Lett. 2020 Nov 23;367(21). doi: 10.1093/femsle/fnaa177.
Mercury superfamily proteins, i.e. inner membrane-spanning proteins (MerC, MerE, MerF and MerT) and a periplasmic mercury-binding protein (MerP), transport mercury into the cytoplasm. A previous study demonstrated that a Mer transporter homolog exhibits cadmium transport activity; based on this, the present study aimed to evaluate the cadmium transport activity of MerC, MerE, MerF and MerT and the effects of MerP co-expression in Escherichia coli. Bacteria expressing MerC, MerE, MerF or MerT without MerP were more sensitive to cadmium and significantly absorbed more cadmium than did the control strain. Expression of MerP in combination with MerC, MerE, MerF or MerT increased the bacterial sensitivity to cadmium and cadmium accumulation compared to a single expression of MerC, MerE, MerF or MerT. Cadmium uptake mediated by MerC, MerE, MerF or MerT was inhibited under cold or acidic conditions. These findings suggest that MerC, MerE, MerF and MerT are broad-spectrum heavy metal transporters that mediate both mercury and cadmium transport into cells and that MerP accelerates the cadmium transport ability of MerC, MerE, MerF and MerT.
汞超级家族蛋白,即内膜跨膜蛋白(MerC、MerE、MerF 和 MerT)和一种周质结合汞蛋白(MerP),将汞转运到细胞质中。先前的研究表明,一种 Mer 转运体同源物具有镉转运活性;基于此,本研究旨在评估 MerC、MerE、MerF 和 MerT 的镉转运活性以及 MerP 在大肠杆菌中的共表达的影响。没有 MerP 的表达 MerC、MerE、MerF 或 MerT 的细菌对镉更敏感,并且比对照菌株显著吸收更多的镉。MerP 与 MerC、MerE、MerF 或 MerT 的联合表达增加了细菌对镉的敏感性和镉的积累,与 MerC、MerE、MerF 或 MerT 的单一表达相比。在冷或酸性条件下,MerC、MerE、MerF 或 MerT 介导的镉摄取受到抑制。这些发现表明 MerC、MerE、MerF 和 MerT 是广谱重金属转运蛋白,可介导汞和镉进入细胞的转运,并且 MerP 加速了 MerC、MerE、MerF 和 MerT 的镉转运能力。