Schwelberger H G, Kang H A, Hershey J W
Department of Biological Chemistry, School of Medicine, University of California, Davis 95616.
J Biol Chem. 1993 Jul 5;268(19):14018-25.
Translation initiation factor eIF-5A (previously named eIF-4D) is an essential and highly conserved protein in eukaryotic cells that promotes formation of the first peptide bond. One of its lysine residues is post-translationally modified by spermidine to form hypusine, a unique residue required for eIF-5A activity. In Saccharomyces cerevisiae eIF-5A is encoded by two highly homologous genes, TIF51A and TIF51B. The two genes are regulated reciprocally by oxygen, where under aerobic conditions TIF51A is expressed and TIF51B is repressed, and under anaerobic conditions the opposite occurs. In order to study the products of the two genes individually, yeast strains were constructed that express either TIF51A or TIF51B under control of a galactose promoter. Each gene gives rise to two isoelectric variants, eIF-5Aa (more acidic) and eIF-5Ab (more basic), both of which carry the hypusine modification. Expression of either TIF51A or TIF51B promotes growth under both aerobic and anaerobic conditions, indicating that the two gene products function indistinguishably. The human cDNA encoding eIF-5A also was expressed in yeast, and the plasmid shuffle technique was used to demonstrate that the human protein can substitute for the homologous yeast protein in vivo. These results indicate that human and yeast eIF-5A are not only conserved at the sequence level but are functionally interchangeable in vivo.
翻译起始因子eIF-5A(以前称为eIF-4D)是真核细胞中一种必需且高度保守的蛋白质,它促进第一个肽键的形成。其赖氨酸残基之一在翻译后被亚精胺修饰形成hypusine,这是eIF-5A活性所需的独特残基。在酿酒酵母中,eIF-5A由两个高度同源的基因TIF51A和TIF51B编码。这两个基因受氧气的相互调节,在有氧条件下TIF51A表达而TIF51B被抑制,在无氧条件下则相反。为了分别研究这两个基因的产物,构建了在半乳糖启动子控制下表达TIF51A或TIF51B的酵母菌株。每个基因产生两种等电变体,eIF-5Aa(酸性更强)和eIF-5Ab(碱性更强),两者都带有hypusine修饰。TIF51A或TIF51B的表达在有氧和无氧条件下均促进生长,表明这两种基因产物的功能没有区别。编码eIF-5A的人cDNA也在酵母中表达,并使用质粒洗牌技术证明人蛋白在体内可以替代同源酵母蛋白。这些结果表明,人和酵母的eIF-5A不仅在序列水平上保守,而且在体内功能上可互换。