Hernández Greco, Altmann Michael, Sierra José Manuel, Urlaub Henning, Diez del Corral Ruth, Schwartz Peter, Rivera-Pomar Rolando
Max-Planck-Institut für biophysikalische Chemie, Abt. Molekulare Biologie, Am Fassberg 11, Göttingen 37077, Germany.
Mech Dev. 2005 Apr;122(4):529-43. doi: 10.1016/j.mod.2004.11.011. Epub 2004 Dec 8.
The Drosophila genome-sequencing project has revealed a total of seven genes encoding eight eukaryotic initiation factor 4E (eIF4E) isoforms. Four of them (eIF4E-1,2, eIF4E-3, eIF4E-4 and eIF4E-5) share exon/intron structure in their carboxy-terminal part and form a cluster in the genome. All eIF4E isoforms bind to the cap (m7GpppN) structure. All of them, except eIF4E-6 and eIF4E-8 were able to interact with Drosophila eIF4G or eIF4E-binding protein (4E-BP). eIF4E-1, eIF4E-2, eIF4E-3, eIF4E-4 and eIF4E-7 rescued a yeast eIF4E-deficient mutant in vivo. Only eIF4E-1 mRNAs and, at a significantly lower level, eIF4E3 and eIF4E-8 are expressed in embryos and throughout the life cycle of the fly. The transcripts of the remaining isoforms were detected from the third instar larvae onwards. This indicates the cap-binding activity relies mostly on eIF4E-1 during embryogenesis. This agrees with the proteomic analysis of the eIF4F complex purified from embryos and with the rescue of l(3)67Af, an embryonic lethal mutant for the eIF4E-1,2 gene, by transgenic expression of eIF4E-1. Overexpression of eIF4E-1 in wild-type embryos and eye imaginal discs results in phenotypic defects in a dose-dependent manner.
果蝇基因组测序项目共揭示了七个编码八种真核起始因子4E(eIF4E)亚型的基因。其中四个(eIF4E - 1、2、eIF4E - 3、eIF4E - 4和eIF4E - 5)在其羧基末端部分具有外显子/内含子结构,并在基因组中形成一个簇。所有eIF4E亚型都与帽结构(m7GpppN)结合。除eIF4E - 6和eIF4E - 8外,所有其他亚型都能够与果蝇eIF4G或eIF4E结合蛋白(4E - BP)相互作用。eIF4E - 1、eIF4E - 2、eIF4E - 3、eIF4E - 4和eIF4E - 7在体内挽救了酵母eIF4E缺陷型突变体。只有eIF4E - 1的mRNA以及水平显著较低的eIF4E3和eIF4E - 8在胚胎和果蝇的整个生命周期中表达。其余亚型的转录本从三龄幼虫开始检测到。这表明在胚胎发育过程中,帽结合活性主要依赖于eIF4E - 1。这与从胚胎中纯化的eIF4F复合物的蛋白质组学分析以及通过eIF4E - 1的转基因表达挽救eIF4E - 1、2基因的胚胎致死突变体l(3)67Af一致。在野生型胚胎和眼成虫盘中过表达eIF4E - 1会以剂量依赖的方式导致表型缺陷。