真核起始因子4B和聚(A)结合蛋白竞争性地结合eIF4G

Shijun Cheng, D. Gallie
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引用次数: 16

摘要

真核生物翻译起始因子(eIF) 4G作为一种支架蛋白,其功能是组装翻译起始复合体所需的组分,将40S核糖体亚基招募到mRNA上。尽管许多真核生物表达两种高度相似的eIF4G亚型,但植物中的eIF4G亚型在大小和序列上彼此高度不同,被称为eIF4G和eIFiso4G。尽管eIFiso4G的结构域组织与其他物种的eIF4G同源物有很大不同,但植物eIF4G的结构域组织在很大程度上是未知的,尽管它在大小和序列上与其他真核生物的eIF4G更相似。在这项研究中,我们发现eIF4G与eIFiso4G的不同之处在于,它含有聚(A)结合蛋白(PABP)和eIF4B的两个不同的相互作用域,但与eIFiso4G相似的是,它具有两个eIF4A相互作用域。PABP和eIF4B结合eIF4G的相同n端区域,就像它们结合eIF4G中间区域HEAT-1区域的c -近端区域一样,导致eIF4B和PABP与每个位点之间的竞争性结合。eIF4G与eIFiso4G的不同之处在于,PABP与eIF4A之间,或eIF4B与eIF4A之间,没有观察到其含有heat -1的区域的竞争性结合。这些结果表明,尽管在大小、序列和结构域组织上存在实质性差异,但PABP和eIF4B与eIF4G和eIFiso4G的结合具有竞争性。
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Eukaryotic initiation factor 4B and the poly(A)-binding protein bind eIF4G competitively
The eukaryotic translation initiation factor (eIF) 4G functions as a scaffold protein that assembles components of the translation initiation complex required to recruit the 40S ribosomal subunit to an mRNA. Although many eukaryotes express two highly similar eIF4G isoforms, those in plants are highly divergent in size and sequence from one another and are referred to as eIF4G and eIFiso4G. Although the domain organization of eIFiso4G differs substantially from eIF4G orthologs in other species, the domain organization of plant eIF4G is largely unknown despite the fact that it is more similar in size and sequence to eIF4G of other eukaryotes. In this study, we show that eIF4G differs from eIFiso4G in that it contains two distinct interaction domains for the poly(A) binding protein (PABP) and eIF4B but is similar to eIFiso4G in having two eIF4A interaction domains. PABP and eIF4B bind the same N-terminal region of eIF4G as they do to a region C-proximal to the HEAT-1 domain in the middle domain of eIF4G, resulting in competitive binding between eIF4B and PABP to each site. eIF4G also differs from eIFiso4G in that no competitive binding was observed between PABP and eIF4A or between eIF4B and eIF4A to its HEAT-1-containing region. These results demonstrate that despite substantial differences in size, sequence, and domain organization, PABP and eIF4B bind to eIF4G and eIFiso4G competitively.
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