White K, Munro H N
United States Department of Agriculture, Tufts University, Boston, Massachusetts 02111.
J Biol Chem. 1988 Jun 25;263(18):8938-42.
Synthesis of the iron storage protein ferritin is induced in rat liver by iron administration, the ferritin L subunit being preferentially stimulated over the H subunit. To examine the basis for this differential regulation of the two subunits, the transcription rates of the L and H genes, the total cellular levels of L and H subunit mRNA, and the distribution of the mRNAs between a stored ribonucleoprotein form and the polysomes were examined in rat liver at several times after iron injection. Iron caused a rapid increase in transcription of the L subunit gene, followed by a rise in L mRNA levels, whereas H subunit gene transcription and H mRNA levels did not increase significantly. Differential transcriptional regulation of ferritin L and H mRNA levels by iron contrasted with the coordinate control of the two subunit mRNAs at the translational level. On giving iron, there was a rapid and synchronous shift of both mRNAs from the ribonucleoprotein fraction onto the polysomes, the same proportion of each mRNA being mobilized. Thus, regulation of ferritin subunit synthesis at these two levels allows both a rapid translational response and a specific transcriptional response to increased intracellular iron levels.
给大鼠肝脏注射铁可诱导铁储存蛋白铁蛋白的合成,其中铁蛋白L亚基比H亚基更易受到刺激。为研究这两个亚基差异调节的基础,在给大鼠注射铁后的不同时间,检测了L和H基因的转录速率、L和H亚基mRNA的总细胞水平,以及mRNA在储存的核糖核蛋白形式和多核糖体之间的分布。铁导致L亚基基因转录迅速增加,随后L mRNA水平上升,而H亚基基因转录和H mRNA水平没有显著增加。铁对铁蛋白L和H mRNA水平的差异转录调节与两个亚基mRNA在翻译水平的协同控制形成对比。给予铁后,两种mRNA都迅速且同步地从核糖核蛋白部分转移到多核糖体上,每种mRNA被动员的比例相同。因此,在这两个水平上对铁蛋白亚基合成的调节既允许对细胞内铁水平升高做出快速的翻译反应,也允许做出特异性的转录反应。