Shalev A, Valásek L, Pise-Masison C A, Radonovich M, Phan L, Clayton J, He H, Brady J N, Hinnebusch A G, Asano K
Laboratory of Gene Regulation and Development, NICHD, and the Basic Research Laboratory, NCI, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 2001 Sep 14;276(37):34948-57. doi: 10.1074/jbc.M102161200. Epub 2001 Jul 16.
Mammalian, plant, and Schizosaccharomyces pombe eukaryotic initiation factor-3 (eIF3) contains a protein homologous to the product of int-6 (eIF3e), a frequent integration site of mouse mammary tumor viruses. By contrast, Saccharomyces cerevisiae does not encode a protein closely related to eIF3e/Int-6. Here, we characterize a novel S. cerevisiae protein (Pci8p, Yil071cp) that contains a PCI (proteasome-COP9 signalosome-eIF3) domain conserved in eIF3e/Int-6. We show that both Pci8p and human eIF3e/Int-6 expressed in budding yeast interact with the yeast eIF3 complex in vivo and in vitro by binding to a discrete segment of its eIF3b subunit Prt1p and that human eIF3e/Int-6 interacts with the human eIF3b segment homologous to the Pci8p-binding site of yeast Prt1p. These results refine our understanding of subunit interactions in the eIF3 complex and suggest structural similarity between human eIF3e/Int-6 and yeast Pci8p. However, deletion of PCI8 had no discernible effect on cell growth or translation initiation as judged by polysome analysis, suggesting that Pci8p is not required for the essential function of eIF3 in translation initiation. Motivated by the involvement of Int-6 in transcriptional control, we investigated the effects of deleting PCI8 on the total mRNA expression profile by oligonucleotide microarray analysis and found reduced mRNA levels for a subset of heat shock proteins in the pci8Delta mutant. We discuss possible dual functions of Pci8p and Int-6 in transcriptional and translational control.
哺乳动物、植物和粟酒裂殖酵母的真核生物起始因子3(eIF3)含有一种与int-6(eIF3e)产物同源的蛋白质,int-6是小鼠乳腺肿瘤病毒的常见整合位点。相比之下,酿酒酵母不编码与eIF3e/Int-6密切相关的蛋白质。在此,我们鉴定了一种新的酿酒酵母蛋白质(Pci8p,Yil071cp),它含有在eIF3e/Int-6中保守的PCI(蛋白酶体-COP9信号体-eIF3)结构域。我们发现,在芽殖酵母中表达的Pci8p和人eIF3e/Int-6在体内和体外都通过与酵母eIF3复合物的eIF3b亚基Prt1p的一个离散片段结合而与之相互作用,并且人eIF3e/Int-6与酵母Prt1p的Pci8p结合位点同源的人eIF3b片段相互作用。这些结果完善了我们对eIF3复合物中亚基相互作用的理解,并表明人eIF3e/Int-6与酵母Pci8p之间存在结构相似性。然而,通过多核糖体分析判断,PCI8的缺失对细胞生长或翻译起始没有明显影响,这表明Pci8p对于eIF3在翻译起始中的基本功能不是必需的。受Int-6参与转录调控的启发,我们通过寡核苷酸微阵列分析研究了缺失PCI8对总mRNA表达谱的影响,发现pci8Delta突变体中一部分热休克蛋白的mRNA水平降低。我们讨论了Pci8p和Int-6在转录和翻译调控中可能的双重功能。