Sirivech S, Frieden E, Osaki S
Biochem J. 1974 Nov;143(2):311-5. doi: 10.1042/bj1430311.
Ferritin-Fe(III) was rapidly and quantitatively reduced and liberated as Fe(II) by FMNH(2), FADH(2) and reduced riboflavin. Dithionite also released Fe(II) from ferritin but at less than 1% of the rate with FMNH(2). Cysteine, glutathione and ascorbate gave a similar slower rate and yielded less than 20% of the total iron from ferritin within a few hours. The reduction of ferritin-Fe(III) by the three riboflavin compounds gave complex second-order kinetics with overlapping fast and slow reactions. The fast reaction appeared to be non-specific and may be due to a reduction of Fe(III) of a lower degree of polymerization, equilibrated with ferritin iron. The amount of this Fe(3+) ion initially reduced was small, less than 0.3% of the total iron. Addition of FMN to the ferritin-dithionite system enhanced the reduction; this is due to the reduction of FMN by dithionite to form FMNH(2) which then reduces ferritin-Fe(III). A comparison of the thermodynamic parameters of FMNH(2)-ferritin and dithionite-ferritin complex formation showed that FMNH(2) required a lower activation energy and a negative entropy change, whereas dithionite required 50% more activation energy and showed a positive entropy change in ferritin reduction. The effectiveness of FMNH(2) in ferritin-Fe(III) reduction may be due to a specific binding of the riboflavin moiety to the protein portion of the ferritin molecule.
铁蛋白 - Fe(III) 能被黄素单核苷酸(FMNH₂)、黄素腺嘌呤二核苷酸(FADH₂)和还原型核黄素迅速且定量地还原,并以 Fe(II) 的形式释放出来。连二亚硫酸盐也能从铁蛋白中释放出 Fe(II),但其释放速率不到 FMNH₂ 的 1%。半胱氨酸、谷胱甘肽和抗坏血酸的释放速率较慢且相似,在数小时内从铁蛋白中释放出的铁不到总铁量的 20%。三种核黄素化合物对铁蛋白 - Fe(III) 的还原呈现出复杂的二级动力学,快速反应和慢速反应相互重叠。快速反应似乎是非特异性的,可能是由于聚合度较低的 Fe(III) 被还原,它与铁蛋白铁处于平衡状态。最初被还原的这种 Fe(3+) 离子的量很少,不到总铁量的 0.3%。向铁蛋白 - 连二亚硫酸盐体系中添加黄素单核苷酸(FMN)可增强还原作用;这是因为连二亚硫酸盐将 FMN 还原形成 FMNH₂,然后 FMNH₂ 再还原铁蛋白 - Fe(III)。对 FMNH₂ - 铁蛋白和连二亚硫酸盐 - 铁蛋白复合物形成的热力学参数进行比较表明,FMNH₂ 需要较低的活化能和负的熵变,而连二亚硫酸盐在还原铁蛋白时需要多 50% 的活化能且呈现正的熵变。FMNH₂ 在还原铁蛋白 - Fe(III) 方面的有效性可能是由于核黄素部分与铁蛋白分子的蛋白质部分发生了特异性结合。