Liu X, Hintze K, Lonnerdal B, Theil E C
Center for BioIron at CHORI, Children's Hospital Oakland Research Institute, Oakland, California, USA.
Biol Res. 2006;39(1):167-71. doi: 10.4067/s0716-97602006000100018.
Bioiron - central to respiration, photosynthesis and DNA synthesis and complicated by radical chemistry with oxygen - depends on ferritin, the super family of protein nanocages (maxi-ferritins in humans, animals, plant, and bacteria, and mini-ferritins, also called DPS proteins, in bacteria) for iron and oxygen control. Regulation of ferritin synthesis, best studied in animals, uses DNA transcription and mRNA translation check points. Ferritin is a member of both the "oxidant stress response" gene family that includes thioredoxin reductase and quinine reductase, and a member of the iron responsive gene family that includes ferroportin and mt-aconitase ferritin DNA regulation responds preferentially to oxidant response inducers and ferritin mRNA to iron inducers: heme confers regulator synergy. Ferritin proteins manage iron and oxygen, with ferroxidase sites and iron + oxygen substrates to form mineral of both Fe and O atoms; maxi-ferritins contribute more to cellular iron metabolism and mini-ferritins to stress responses. Iron recovery from ferritin is controlled by gated protein pores, possibly contributing to iron absorption from ferritin, a significant dietary iron source. Ferritin gene regulation is a model for integrating DNA/mRNA controls, while ferritin protein function is central to molecular nutrition cellular metabolism at the crossroads of iron and oxygen in biology.
生物铁——呼吸、光合作用和DNA合成的核心,且因与氧发生自由基化学反应而变得复杂——依赖于铁蛋白,即蛋白质纳米笼的超家族(人类、动物、植物和细菌中的大型铁蛋白,以及细菌中的小型铁蛋白,也称为DPS蛋白)来控制铁和氧。铁蛋白合成的调节在动物中研究得最为深入,它利用DNA转录和mRNA翻译检查点。铁蛋白既是包括硫氧还蛋白还原酶和奎宁还原酶在内的“氧化应激反应”基因家族的成员,也是包括铁转运蛋白和线粒体乌头酸酶在内的铁反应基因家族的成员。铁蛋白DNA调节优先响应氧化应激反应诱导剂,而铁蛋白mRNA则响应铁诱导剂:血红素赋予调节协同作用。铁蛋白通过铁氧化酶位点和铁+氧底物来管理铁和氧,以形成铁和氧原子的矿物质;大型铁蛋白对细胞铁代谢的贡献更大,而小型铁蛋白则对应激反应起作用。从铁蛋白中回收铁由门控蛋白孔控制,这可能有助于从铁蛋白中吸收铁,铁蛋白是一种重要的膳食铁来源。铁蛋白基因调节是整合DNA/mRNA控制的模型,而铁蛋白的蛋白质功能是生物学中铁和氧交叉点上分子营养细胞代谢核心。