植物翻译起始过程中poly(A)结合蛋白在cap结合复合体组装中的作用

D. Gallie
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引用次数: 20

摘要

真核生物的翻译起始需要多个起始因子(eIFs)的参与,这些起始因子促进40s核糖体亚基与mRNA的结合,并将80s核糖体组装在正确的起始密码子上。eIF4F由eIF4E、eIF4A和eIF4G组成,与mRNA的5 ' -cap结构结合,为mRNA募集40s亚基做准备。eIF4B促进了eIF4A和eIF4F的atp依赖性RNA解旋酶活性,而eIF4F需要解开5 ' -先导体中的二级结构,否则在起始过程中会阻碍40s亚基的扫描。聚(A)结合蛋白(PABP)结合聚(A)尾部,与eIF4G和eIF4B相互作用,促进mRNA的环状化,并通过促进40s亚基募集来刺激翻译。因此,这些因子在蛋白质合成的早期阶段起着至关重要的作用。它们的组装和功能需要多种相互作用,这些相互作用在本质上是竞争性的,并决定了mRNA末端之间相互作用的性质。本文综述了植物因子的结构域组织和伴侣蛋白相互作用,这些因子与动物和酵母中的因子有相似之处,但在几个重要方面有所不同。它们的相互作用对因子活性的功能后果也进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of the poly(A) binding protein in the assembly of the Cap-binding complex during translation initiation in plants
Translation initiation in eukaryotes requires the involvement of multiple initiation factors (eIFs) that facilitate the binding of the 40 S ribosomal subunit to an mRNA and assemble the 80 S ribosome at the correct initiation codon. eIF4F, composed of eIF4E, eIF4A, and eIF4G, binds to the 5′-cap structure of an mRNA and prepares an mRNA for recruitment of a 40 S subunit. eIF4B promotes the ATP-dependent RNA helicase activity of eIF4A and eIF4F needed to unwind secondary structure present in a 5′-leader that would otherwise impede scanning of the 40 S subunit during initiation. The poly(A) binding protein (PABP), which binds the poly(A) tail, interacts with eIF4G and eIF4B to promote circularization of an mRNA and stimulates translation by promoting 40 S subunit recruitment. Thus, these factors serve essential functions in the early steps of protein synthesis. Their assembly and function requires multiple interactions that are competitive in nature and determine the nature of interactions between the termini of an mRNA. In this review, the domain organization and partner protein interactions are presented for the factors in plants which share similarities with those in animals and yeast but differ in several important respects. The functional consequences of their interactions on factor activity are also discussed.
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