Jacobs D L, Watt G D, Frankel R B, Papaefthymiou G C
Department of Physics, California Polytechnic University, San Luis Obispo 93407.
Biochemistry. 1989 Feb 21;28(4):1650-5. doi: 10.1021/bi00430a033.
The early redox events involved in iron reduction and mobilization in mammalian ferritin have been investigated by several techniques. Sedimentation velocity measurements of ferritin samples with altered core sizes, prepared by partial reduction and Fe2+ chelation, suggest two different events occur during iron loss from the ferritin core. Reductive optical titrations confirm this biphasic behavior by showing that the first 20-30% of core reduction has different optical properties than the latter 70-80%. Proton uptake during initial core reduction is near zero, but as the percent core reduction increases, the proton uptake (H+/e) values increase to 2 H+/e (2 H+/Fe3+ reduced) as core reduction approaches 1 e/Fe3+. Coulometric reduction of ferritin by mediators of different redox potential and different cross-sectional areas show a two-phase sigmoidal reaction pattern in which initial core reduction occurs at a slower rate than later core reduction. The above experiments were all conducted in the absence of iron chelators so that the observed results were all attributed to core reduction rather than the combined effects of core reduction accompanied by Fe2+ chelation. The coulometric reduction of ferritin by various mediators shows a correlation more with reduction potential than with molecular cross-sectional area. The role of the ferritin channels in core reduction is considered in terms of the reported results.
已经通过多种技术研究了哺乳动物铁蛋白中铁还原和动员过程中早期的氧化还原事件。通过部分还原和Fe2+螯合制备的具有不同核心尺寸的铁蛋白样品的沉降速度测量结果表明,在铁从铁蛋白核心中流失的过程中发生了两种不同的事件。还原光学滴定通过表明核心还原的前20-30%具有与后70-80%不同的光学性质,证实了这种双相行为。初始核心还原过程中的质子吸收接近零,但随着核心还原百分比的增加,当核心还原接近1 e/Fe3+时,质子吸收(H+/e)值增加到2 H+/e(每还原1个Fe3+吸收2个H+)。用具有不同氧化还原电位和不同横截面积的介质对铁蛋白进行库仑还原,显示出一种两相S形反应模式,其中初始核心还原的速率比后期核心还原的速率慢。上述实验均在没有铁螯合剂的情况下进行,因此观察到的结果都归因于核心还原,而不是核心还原与Fe2+螯合的综合作用。用各种介质对铁蛋白进行库仑还原,显示出与还原电位的相关性比与分子横截面积的相关性更大。根据报道的结果,考虑了铁蛋白通道在核心还原中的作用。