Laboratoire de Biologie Moléculaire Végétale, CNRS-URA 57, Université Joseph Fourier (Grenoble 1), BP 53X, F-38041 Grenoble Cedex, France.
Plant Physiol. 1989 Jun;90(2):586-90. doi: 10.1104/pp.90.2.586.
In animal cells specialized for iron storage, iron-induced accumulation of ferritin is known to result from a shift of stored mRNA from the ribonucleoprotein fraction to polysomes. Previous reports with bean leaves suggested that in plants iron induction of ferritin synthesis would result from a regulation at the transcriptional level (F van der Mark, F Bienfait, H van der Ende [1983] Biochem Biophys Res Commun 115:463-469). Soybean (Glycine max, cv Mandarin) cell suspension cultures have been used here to support these findings. Ferritin induction is obtained by addition of Fe-citrate to the culture medium. A good correlation is found between cellular iron content and the amount of ferritin accumulation. This protein accumulation corresponds to an increase of in vitro translatable ferritin mRNA. Addition of 4 micrograms actinomycin D per milliliter to the cultures inhibits completely in vivo RNA synthesis, whereas protein synthesis was poorly affected, at least for 24 hours. During the same time, this concentration of actinomycin D strongly inhibits the iron-induced synthesis of ferritin. These results show that in soybean cell cultures, the mechanism of regulation of ferritin synthesis in response to iron does not result from recruitment of preexisting mRNA. They confirm that in plant systems, ferritin synthesis results from increased transcription of the corresponding genes.
在专门用于储存铁的动物细胞中,铁诱导的铁蛋白积累是由于储存在核糖核蛋白部分的 mRNA 转移到多核糖体。以前对菜豆叶片的研究表明,在植物中,铁诱导铁蛋白合成将导致转录水平的调节(F van der Mark、F Bienfait、H van der Ende [1983] Biochem Biophys Res Commun 115:463-469)。在这里,我们使用大豆(Glycine max,cv Mandarin)细胞悬浮培养物来支持这些发现。通过向培养基中添加 Fe-柠檬酸盐来诱导铁蛋白。细胞内铁含量与铁蛋白积累量之间存在良好的相关性。这种蛋白质积累对应于体外可翻译的铁蛋白 mRNA 的增加。向培养物中添加每毫升 4 微克放线菌素 D 可完全抑制体内 RNA 合成,而蛋白质合成的影响很小,至少在 24 小时内是这样。同时,该浓度的放线菌素 D 强烈抑制铁诱导的铁蛋白合成。这些结果表明,在大豆细胞培养物中,铁蛋白合成对铁的反应的调节机制不是通过募集预先存在的 mRNA 来实现的。它们证实,在植物系统中,铁蛋白合成是由于相应基因的转录增加所致。