Bezkorovainy A, Solberg L, Poch M, Miller-Catchpole R
Int J Biochem. 1987;19(6):517-22. doi: 10.1016/0020-711x(87)90135-2.
Ferrous iron uptake studies in Bifidobacterium bifidum var. pennsylvanicus were carried out in a well-defined salt solution termed "modified Hanks solution" at both high iron concentrations (LAFIUS conditions) and low concentrations (HAFIUS conditions). Various divalent metals, Mn2+, Zn2+, Ni2+ and Cu2+, inhibited iron uptake under HAFIUS conditions in a non-competitive manner, and in a pseudo-competitive manner under LAFIUS conditions. Cr2+ had no effect. Co2+ inhibited iron uptake competitively under HAFIUS conditions. Metabolic affectors that inhibited iron uptake both under HAFIUS and LAFIUS conditions were: tetraphenylphosphonium chloride, diethylstilbesterol, vanadate, carbonylcyanide-m-chlorophenyl-hydrazone, and a mixture of valinomycin and nigericin. Substances that stimulated iron uptake were KCl, valinomycin, and nigericin. Iron uptake under LAFIUS conditions in piperazine-buffered modified Hanks solution was higher than that in the acetate-buffered solution, and acetate inhibited iron uptake in the piperazine buffer. HAFIUS showed no difference. It is concluded that iron uptake in bifidobacteria is driven by an ATPase-dependent proton-motive force and that both the pH gradient and membrane potential are involved in this process. Mn2+, Zn2+, Ni2+, and Cu2+ may be transported via LAFIUS, but not HAFIUS. HAFIUS may transport only Co2+ in addition to Fe2+.
在双歧杆菌宾夕法尼亚变种中进行了亚铁摄取研究,研究是在一种明确的盐溶液(称为“改良汉克斯溶液”)中,分别在高铁浓度(LAFIUS条件)和低浓度(HAFIUS条件)下进行的。在HAFIUS条件下,各种二价金属离子,即Mn2 +、Zn2 +、Ni2 +和Cu2 +,以非竞争性方式抑制铁摄取,而在LAFIUS条件下则以伪竞争性方式抑制。Cr2 +没有影响。在HAFIUS条件下,Co2 +以竞争性方式抑制铁摄取。在HAFIUS和LAFIUS条件下均抑制铁摄取的代谢影响因子有:四苯基氯化铵、己烯雌酚、钒酸盐、羰基氰化物间氯苯腙,以及缬氨霉素和尼日利亚菌素的混合物。刺激铁摄取的物质有KCl、缬氨霉素和尼日利亚菌素。在哌嗪缓冲的改良汉克斯溶液中,LAFIUS条件下的铁摄取高于醋酸盐缓冲溶液中的,且醋酸盐在哌嗪缓冲液中抑制铁摄取。HAFIUS条件下无差异。得出的结论是,双歧杆菌中的铁摄取是由ATP酶依赖性质子动力驱动的,且pH梯度和膜电位均参与这一过程。Mn2 +、Zn2 +、Ni2 +和Cu2 +可能通过LAFIUS转运,但不是通过HAFIUS。除Fe2 +外,HAFIUS可能仅转运Co2 +。