Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo 113-8657, Japan.
Biochem Biophys Res Commun. 2010 Jul 9;397(4):673-8. doi: 10.1016/j.bbrc.2010.06.001. Epub 2010 Jun 11.
Eukaryotic translation initiation factor 6 (eIF6) is an essential component of ribosome biogenesis. In our present study, we characterize plant eIF6 genes for the first time. Although a single gene encodes eIF6 in yeast and animals, two genes were found to encode proteins homologous to animal and yeast eIF6 in Arabidopsis and rice, denoted At-eIF6;1 and At-eIF6;2, and Os-eIF6;1 and Os-eIF6;2, respectively. Analysis of the yeast eif6 (tif6) mutant suggested that plant eIF6, at least in the case of At-eIF6;1, can complement the essential function of eIF6 in yeast. Evidence for the essential role of eIF6 in plants was also provided by the embryonic-lethal phenotype of the at-eif6;1 mutant. In contrast, At-eIF6;2 appears not to be essential due to its very low expression level and the normal growth phenotype of the eif6;2 mutants. Consistent with the putative role of plant eIF6 in ribosome biogenesis, At-eIF6;1 is predominately expressed in tissues where cell division actively proceeds under the control of intronic cis-regulatory elements. On the other hand, both Os-eIF6;1 and Os-eIF6;2 are probably active genes because they are expressed at significant expression levels. Interestingly, the supply of ammonium nitrate as a plant nutrient was found to induce specifically the expression of Os-eIF6;2. Our present findings indicate that the eIF6 genes have differently evolved in plant and animal kingdoms and also in distinct plant species.
真核翻译起始因子 6(eIF6)是核糖体生物发生的必需组成部分。在我们目前的研究中,我们首次对植物 eIF6 基因进行了特征描述。尽管酵母和动物中只有一个基因编码 eIF6,但在拟南芥和水稻中发现了两个基因,分别编码与动物和酵母 eIF6 同源的蛋白,命名为 At-eIF6;1 和 At-eIF6;2,以及 Os-eIF6;1 和 Os-eIF6;2。对酵母 eif6(tif6)突变体的分析表明,植物 eIF6(至少在 At-eIF6;1 的情况下)可以在酵母中补充 eIF6 的必需功能。eIF6 在植物中的必需作用的证据也由 at-eif6;1 突变体的胚胎致死表型提供。相比之下,由于 At-eIF6;2 的表达水平非常低,且 eif6;2 突变体的生长表型正常,因此它似乎不是必需的。At-eIF6;1 主要在细胞分裂活跃的组织中表达,这与植物 eIF6 在核糖体生物发生中的假定作用一致,受内含子顺式调控元件的控制。另一方面,由于它们具有显著的表达水平,因此推测 Os-eIF6;1 和 Os-eIF6;2 都是活跃的基因。有趣的是,发现作为植物营养物的硝酸铵供应会特异性地诱导 Os-eIF6;2 的表达。我们目前的研究结果表明,eIF6 基因在植物和动物王国以及不同的植物物种中都有不同的进化。