Hubbard J A, Lewandowska K B, Hughes M N, Poole R K
Arch Microbiol. 1986 Oct;146(1):80-6. doi: 10.1007/BF00690163.
The effects of iron limitation on growth, the composition and function of the respiratory chains, and gallium uptake in Escherichia coli have been studied. Decreasing the iron concentration in a defined medium using Chelex resin gave lower growth yields in both continuous culture and prolonged batch culture. In the former, iron-limited (entering [Fe] less than or equal to 2.0 microM) cells exhibited diminished respiration rates, respiration-driven proton translocation quotients, and levels of non-haem iron and cytochromes. The cellular concentration of haemoprotein b-590 (a cytochrome alpha 1-like hydroperoxidase) decreased 20-fold on iron limitation, whilst a CO-binding pigment with an absorption maximum in the dithionite-treated form near 500 nm appeared. Gallium(III) (9 microM) added to iron-limited, but not iron-sufficient, cultures diminished growth yields further; cells grown with low entering concentrations of iron took up less gallium than iron-sufficient cells. These results are attributed to the interference by gallium(III) with siderophore-mediated metal uptake. Gallium also stimulated iron uptake and was itself accumulated by iron-sufficient cells, suggesting that gallium(III) also affects the iron transport system(s) of low affinity.
研究了铁限制对大肠杆菌生长、呼吸链组成和功能以及镓摄取的影响。使用螯合树脂降低限定培养基中的铁浓度,在连续培养和延长的分批培养中均导致较低的生长产量。在前者中,铁限制(进入的[Fe]小于或等于2.0 microM)的细胞表现出呼吸速率、呼吸驱动的质子转运商以及非血红素铁和细胞色素水平降低。血红素蛋白b - 590(一种细胞色素α1样氢过氧化物酶)的细胞浓度在铁限制时降低了20倍,同时出现了一种在连二亚硫酸盐处理形式中最大吸收峰接近500 nm的CO结合色素。添加到铁限制但非铁充足培养物中的镓(III)(9 microM)进一步降低了生长产量;以低进入铁浓度生长的细胞比铁充足的细胞摄取的镓更少。这些结果归因于镓(III)对铁载体介导的金属摄取的干扰。镓还刺激铁摄取,并且其本身被铁充足的细胞积累,这表明镓(III)也影响低亲和力的铁转运系统。