Komar Anton A, Gross Stephane R, Barth-Baus Diane, Strachan Ryan, Hensold Jack O, Goss Kinzy Terri, Merrick William C
Department of Biochemistry, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106, USA.
J Biol Chem. 2005 Apr 22;280(16):15601-11. doi: 10.1074/jbc.M413728200. Epub 2005 Feb 16.
Eukaryotic initiation factor 2A (eIF2A) has been shown to direct binding of the initiator methionyl-tRNA (Met-tRNA(i)) to 40 S ribosomal subunits in a codon-dependent manner, in contrast to eIF2, which requires GTP but not the AUG codon to bind initiator tRNA to 40 S subunits. We show here that yeast eIF2A genetically interacts with initiation factor eIF4E, suggesting that both proteins function in the same pathway. The double eIF2A/eIF4E-ts mutant strain displays a severe slow growth phenotype, which correlated with the accumulation of 85% of the double mutant cells arrested at the G(2)/M border. These cells also exhibited a disorganized actin cytoskeleton and elevated actin levels, suggesting that eIF2A might be involved in controlling the expression of genes involved in morphogenic processes. Further insights into eIF2A function were gained from the studies of eIF2A distribution in ribosomal fractions obtained from either an eIF5BDelta (fun12Delta) strain or a eIF3b-ts (prt1-1) strain. It was found that the binding of eIF2A to 40 and 80 S ribosomes was not impaired in either strain. We also found that eIF2A functions as a suppressor of Ure2p internal ribosome entry site-mediated translation in yeast cells. The regulation of expression from the URE2 internal ribosome entry site appears to be through the levels of eIF2A protein, which has been found to be inherently unstable with a half-life of approximately 17 min. It was hypothesized that this instability allows for translational control through the level of eIF2A protein in yeast cells.
真核生物起始因子2A(eIF2A)已被证明能以密码子依赖的方式指导起始甲硫氨酰 - tRNA(Met - tRNA(i))与40S核糖体亚基结合,这与eIF2不同,eIF2需要GTP但不需要AUG密码子就能将起始tRNA与40S亚基结合。我们在此表明酵母eIF2A与起始因子eIF4E存在遗传相互作用,这表明这两种蛋白质在同一途径中发挥作用。双eIF2A/eIF4E - ts突变株表现出严重的生长缓慢表型,这与85%的双突变细胞在G(2)/M边界处停滞积累相关。这些细胞还表现出肌动蛋白细胞骨架紊乱和肌动蛋白水平升高,这表明eIF2A可能参与控制与形态发生过程相关基因的表达。通过对从eIF5BΔ(fun12Δ)菌株或eIF3b - ts(prt1 - 1)菌株获得的核糖体组分中eIF2A分布的研究,对eIF2A的功能有了进一步的了解。发现在这两种菌株中,eIF2A与40S和80S核糖体的结合均未受损。我们还发现eIF2A在酵母细胞中作为Ure2p内部核糖体进入位点介导的翻译的抑制因子发挥作用。URE2内部核糖体进入位点的表达调控似乎是通过eIF2A蛋白水平进行的,已发现eIF2A本质上不稳定,半衰期约为17分钟。据推测,这种不稳定性允许通过酵母细胞中eIF2A蛋白水平进行翻译控制。