Coldwell Mark J, Morley Simon J
Department of Biochemistry, School of Life Sciences, University of Sussex, Falmer, Brighton BN1 9QG, United Kingdom.
Mol Cell Biol. 2006 Nov;26(22):8448-60. doi: 10.1128/MCB.01248-06. Epub 2006 Sep 18.
The eukaryotic initiation factor (eIF) 4GI gene locus (eIF4GI) contains three identified promoters, generating alternately spliced mRNAs, yielding a total of five eIF4GI protein isoforms. Although eIF4GI plays a critical role in mRNA recruitment to the ribosomes, little is known about the functions of the different isoforms, their partner binding capacities, or the role of the homolog, eIF4GII, in translation initiation. To directly address this, we have used short interfering RNAs (siRNAs) expressed from DNA vectors to silence the expression of eIF4GI in HeLa cells. Here we show that reduced levels of specific mRNA and eIF4GI isoforms in HeLa cells promoted aberrant morphology and a partial inhibition of translation. The latter reflected dephosphorylation of 4E-BP1 and decreased eIF4F complex levels, with no change in eIF2alpha phosphorylation. Expression of siRNA-resistant Myc-tagged eIF4GI isoforms has allowed us to show that the different isoforms exhibit significant differences in their ability to restore translation rates. Here we quantify the efficiency of eIF4GI promoter usage in mammalian cells and demonstrate that even though the longest isoform of eIF4GI (eIF4GIf) was relatively poorly expressed when reintroduced, it was more efficient at promoting the translation of cellular mRNAs than the more highly expressed shorter isoforms used in previous functional studies.
真核生物起始因子(eIF)4GI基因座(eIF4GI)包含三个已确定的启动子,可产生交替剪接的mRNA,总共产生五种eIF4GI蛋白异构体。尽管eIF4GI在mRNA募集到核糖体的过程中起关键作用,但对于不同异构体的功能、它们与伴侣的结合能力,或同源物eIF4GII在翻译起始中的作用,人们了解甚少。为了直接解决这个问题,我们使用了从DNA载体表达的小干扰RNA(siRNA)来沉默HeLa细胞中eIF4GI的表达。在此我们表明,HeLa细胞中特定mRNA和eIF4GI异构体水平的降低促进了异常形态并部分抑制了翻译。后者反映了4E-BP1的去磷酸化和eIF4F复合物水平的降低,而eIF2α磷酸化没有变化。表达对siRNA有抗性的Myc标签的eIF4GI异构体使我们能够表明,不同的异构体在恢复翻译速率的能力上表现出显著差异。在此我们量化了哺乳动物细胞中eIF4GI启动子使用的效率,并证明,即使重新引入时eIF4GI最长的异构体(eIF4GIf)表达相对较差,但与先前功能研究中使用的表达量更高的较短异构体相比,它在促进细胞mRNA翻译方面更有效。