Ibrahimo Salma, Holmes Leah E A, Ashe Mark P
Faculty of Life Sciences, The University of Manchester, The Michael Smith Building, Oxford Road, Manchester, UK.
Yeast. 2006 Oct-Nov;23(14-15):1075-88. doi: 10.1002/yea.1415.
The eukaryotic translation initiation factor eIF4E is responsible for the recognition of the mRNA cap structure and, as such, plays a key role in the selection of mRNAs for translation. The interaction of eIF4E with the 'multi-adaptor' eIF4G (and thus recruitment of ribosomes to mRNA) can be regulated via competitive binding of 4E-binding proteins (4E-BPs). 4E-BPs have broad functions in cell growth, proliferation and development. We have found that disruption of the genes for either of the yeast 4E-BPs (Eap1p or Caf20p) leads to an inhibition of pseudohyphal growth in the resulting diploid yeast strain following nitrogen limitation. Specific 4E-binding domain mutations destroy the capacity of each 4E-BP gene to complement the non-pseudohyphal phenotype, suggesting that a translational function for the 4E-BPs is important for pseudohyphal growth. In addition, neither of the 4E-BP deletion strains is deficient in global or stress-regulated protein synthesis. However, our evidence reveals that the two 4E-BPs are functionally distinct with regard to pseudohyphal growth. Therefore, this work supports a model where the yeast 4E-BPs are acting on specific mRNAs to facilitate a defined proliferative response to environmental stress in yeast.
真核生物翻译起始因子eIF4E负责识别mRNA帽结构,因此在选择用于翻译的mRNA中起关键作用。eIF4E与“多接头”eIF4G的相互作用(从而使核糖体募集到mRNA)可通过4E结合蛋白(4E-BPs)的竞争性结合来调节。4E-BPs在细胞生长、增殖和发育中具有广泛的功能。我们发现,破坏酵母中任一4E-BP(Eap1p或Caf20p)的基因会导致在氮限制后所得二倍体酵母菌株中的假菌丝生长受到抑制。特定的4E结合域突变破坏了每个4E-BP基因互补非假菌丝表型的能力,这表明4E-BPs的翻译功能对假菌丝生长很重要。此外,两个4E-BP缺失菌株在全局或应激调节的蛋白质合成方面均无缺陷。然而,我们的证据表明,就假菌丝生长而言,这两种4E-BPs在功能上是不同的。因此,这项工作支持了一种模型,即酵母4E-BPs作用于特定的mRNA,以促进酵母对环境应激的特定增殖反应。