Pause A, Méthot N, Svitkin Y, Merrick W C, Sonenberg N
Department of Biochemistry, McGill University, Montreal, Quebec, Canada.
EMBO J. 1994 Mar 1;13(5):1205-15. doi: 10.1002/j.1460-2075.1994.tb06370.x.
Eukaryotic translation initiation factor-4A (eIF-4A) plays a critical role in binding of eukaryotic mRNAs to ribosomes. It has been biochemically characterized as an RNA-dependent ATPase and RNA helicase and is a prototype for a growing family of putative RNA helicases termed the DEAD box family. It is required for mRNA-ribosome binding both in its free form and as a subunit of the cap binding protein complex, eIF-4F. To gain further understanding into the mechanism of action of eIF-4A in mRNA-ribosome binding, defective eIF-4A mutants were tested for their abilities to function in a dominant negative manner in a rabbit reticulocyte translation system. Several mutants were demonstrated to be potent inhibitors of translation. Addition of mutant eIF-4A to a rabbit reticulocyte translation system strongly inhibited translation of all mRNAs studied including those translated by a cap-independent internal initiation mechanism. Addition of eIF-4A or eIF-4F relieved inhibition of translation, but eIF-4F was six times more effective than eIF-4A, whereas eIF-4B or other translation factors failed to relieve the inhibition. Kinetic experiments demonstrated that mutant eIF-4A is defective in recycling through eIF-4F, thus explaining the dramatic inhibition of translation. Mutant eIF-4A proteins also inhibited eIF-4F-dependent, but not eIF-4A-dependent RNA helicase activity. Taken together these results suggest that eIF-4A functions primarily as a subunit of eIF-4F, and that singular eIF-4A is required to recycle through the complex during translation. Surprisingly, eIF-4F, which binds to the cap structure, appears to be also required for the translation of naturally uncapped mRNAs.
真核生物翻译起始因子4A(eIF - 4A)在真核生物mRNA与核糖体的结合过程中发挥着关键作用。它在生化特性上被鉴定为一种依赖RNA的ATP酶和RNA解旋酶,是一个不断扩大的被称为DEAD盒家族的假定RNA解旋酶家族的原型。它以游离形式以及作为帽结合蛋白复合物eIF - 4F的一个亚基时,对于mRNA与核糖体的结合都是必需的。为了更深入地了解eIF - 4A在mRNA与核糖体结合中的作用机制,对有缺陷的eIF - 4A突变体在兔网织红细胞翻译系统中以显性负性方式发挥功能的能力进行了测试。几个突变体被证明是翻译的有效抑制剂。向兔网织红细胞翻译系统中添加突变型eIF - 4A强烈抑制了所有研究的mRNA的翻译,包括那些通过不依赖帽的内部起始机制翻译的mRNA。添加eIF - 4A或eIF - 4F可缓解翻译抑制,但eIF - 4F的效果比eIF - 4A高六倍,而eIF - 4B或其他翻译因子则无法缓解这种抑制。动力学实验表明,突变型eIF - 4A在通过eIF - 4F进行循环利用方面存在缺陷,从而解释了翻译受到的显著抑制。突变型eIF - 4A蛋白也抑制了依赖eIF - 4F的RNA解旋酶活性,但不抑制依赖eIF - 4A的RNA解旋酶活性。综合这些结果表明,eIF - 4A主要作为eIF - 4F的一个亚基发挥作用,并且单个eIF - 4A在翻译过程中需要通过该复合物进行循环利用。令人惊讶的是,与帽结构结合的eIF - �F似乎对于天然无帽mRNA的翻译也是必需的。