Department of Biological Sciences, School of Pharmaceutical Sciences, UNESP-Univ Estadual Paulista, Rodovia Araraquara-Jaú, km 01, Araraquara, SP 14801-902, Brazil.
Amino Acids. 2013 Feb;44(2):631-44. doi: 10.1007/s00726-012-1387-7. Epub 2012 Sep 4.
The protein eukaryotic initiation factor 5A (eIF5A) is highly conserved among archaea and eukaryotes, but not in bacteria. Bacteria have the elongation factor P (EF-P), which is structurally and functionally related to eIF5A. eIF5A is essential for cell viability and the only protein known to contain the amino acid residue hypusine, formed by post-translational modification of a specific lysine residue. Although eIF5A was initially identified as a translation initiation factor, recent studies strongly support a function for eIF5A in the elongation step of translation. However, the mode of action of eIF5A is still unknown. Here, we analyzed the oligomeric state of yeast eIF5A. First, by using size-exclusion chromatography, we showed that this protein exists as a dimer in vitro, independent of the hypusine residue or electrostatic interactions. Protein-protein interaction assays demonstrated that eIF5A can form oligomers in vitro and in vivo, in an RNA-dependent manner, but independent of the hypusine residue or the ribosome. Finally, small-angle X-ray scattering (SAXS) experiments confirmed that eIF5A behaves as a stable dimer in solution. Moreover, the molecular envelope determined from the SAXS data shows that the eIF5A dimer is L-shaped and superimposable on the tRNA(Phe) tertiary structure, analogously to the EF-P monomer.
真核起始因子 5A(eIF5A)是古菌和真核生物中高度保守的蛋白质,但在细菌中不存在。细菌具有延伸因子 P(EF-P),它在结构和功能上与 eIF5A 相关。eIF5A 对细胞活力是必需的,也是已知唯一含有 hypusine 氨基酸残基的蛋白质,该残基是通过特定赖氨酸残基的翻译后修饰形成的。尽管 eIF5A 最初被鉴定为翻译起始因子,但最近的研究强烈支持 eIF5A 在翻译延伸步骤中的功能。然而,eIF5A 的作用机制尚不清楚。在这里,我们分析了酵母 eIF5A 的寡聚状态。首先,通过使用大小排阻层析,我们表明该蛋白在体外以二聚体形式存在,不依赖于 hypusine 残基或静电相互作用。蛋白-蛋白相互作用测定表明,eIF5A 可以在体外和体内以 RNA 依赖性方式形成寡聚体,但不依赖于 hypusine 残基或核糖体。最后,小角 X 射线散射(SAXS)实验证实 eIF5A 在溶液中表现为稳定的二聚体。此外,从 SAXS 数据确定的分子包络表明,eIF5A 二聚体呈 L 形,与 tRNA(Phe)三级结构重叠,类似于 EF-P 单体。