Department of Biological Science, College of Natural Sciences, Sookmyung Women's University, Seoul, Republic of Korea.
Biochimie. 2010 Apr;92(4):333-42. doi: 10.1016/j.biochi.2010.01.014. Epub 2010 Jan 25.
In this work, we present evidence of Fe(2+) transport by rat heart mitochondrial F(1)F(0) ATP synthase. Iron uptake by the vesicles containing the enzyme was concentration- and temperature-dependent, with an optimum temperature of 37 degrees C. Both ATP and ADP stimulated iron uptake in a concentration-dependent manner, whereas AMP, AMPPCP, and mADP did not. Inhibitors of the enzyme, oligomycin, and resveratrol similarly blocked iron transport. The iron uptake was confirmed by inhibition using specific antibodies against the alpha, beta, and c subunits of the enzyme. Interestingly, slight transport of common divalent and trivalent metal ions such as Mg(+2), Ca(+2), Mn(+2), Zn(+2), Cu(+2), Fe(+3), and Al(+3) was observed. Moreover, Cu(+2), even in the nM range, inhibited iron uptake and attained maximum inhibition of approximately 56%. Inorganic phosphate (Pi) in the medium exerted an opposite effect depending on the type of adenosine nucleotide, which was suppressed with ATP, but enhanced with ADP. A similarly stimulating effect of ATP and ADP with an inverse effect of Pi suggests that the activity of ATPase and ATP synthase may be associated with iron uptake in a different manner, probably via antiport of H(+).
在这项工作中,我们提出了铁(2+)通过大鼠心脏线粒体 F(1)F(0)ATP 合酶转运的证据。含有该酶的囊泡中铁的摄取与浓度和温度有关,最佳温度为 37 摄氏度。ATP 和 ADP 均以浓度依赖的方式刺激铁摄取,而 AMP、AMPPCP 和 mADP 则没有。酶的抑制剂寡霉素和白藜芦醇也同样阻止了铁的运输。通过使用针对酶的α、β和 c 亚基的特异性抗体抑制来确认铁摄取。有趣的是,观察到了常见的二价和三价金属离子如 Mg(+2)、Ca(+2)、Mn(+2)、Zn(+2)、Cu(+2)、Fe(+3)和 Al(+3)的轻微转运。此外,即使在 nM 范围内,Cu(+2)也抑制铁摄取,并达到约 56%的最大抑制。介质中的无机磷酸盐(Pi)根据腺苷核苷酸的类型产生相反的效果,与 ATP 一起被抑制,但与 ADP 一起增强。ATP 和 ADP 的类似刺激作用以及 Pi 的相反作用表明,ATP 酶和 ATP 合酶的活性可能以不同的方式与铁摄取相关,可能通过 H(+)的反向转运。