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Two related trypanosomatid eIF4G homologues have functional differences compatible with distinct roles during translation initiation

机译:两个相关的锥虫eIF4G同源物在翻译起始过程中具有与不同角色兼容的功能差异

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摘要

In higher eukaryotes, eIF4A, eIF4E and eIF4G homologues interact to enable mRNA recruitment to the ribosome. eIF4G acts as a scaffold for these interactions and also interacts with other proteins of the translational machinery. Trypanosomatid protozoa have multiple homologues of eIF4E and eIF4G and the precise function of each remains unclear. Here, 2 previously described eIF4G homologues, EIF4G3 and EIF4G4, were further investigated. In vitro, both homologues bound EIF4AI, but with different interaction properties. Binding to distinct eIF4Es was also confirmed; EIF4G3 bound EIF4E4 while EIF4G4 bound EIF4E3, both these interactions required similar binding motifs. EIF4G3, but not EIF4G4, interacted with PABP1, a poly-A binding protein homolog. Work in vivo with Trypanosoma brucei showed that both EIF4G3 and EIF4G4 are cytoplasmic and essential for viability. Depletion of EIF4G3 caused a rapid reduction in total translation while EIF4G4 depletion led to changes in morphology but no substantial inhibition of translation. Site-directed mutagenesis was used to disrupt interactions of the eIF4Gs with either eIF4E or eIF4A, causing different levels of growth inhibition. Overall the results show that only EIF4G3, with its cap binding partner EIF4E4, plays a major role in translational initiation.
机译:在高级真核生物中,eIF4A,eIF4E和eIF4G同源物相互作用以使mRNA募集到核糖体。 eIF4G充当这些相互作用的支架,并且还与翻译机制的其他蛋白质相互作用。锥虫原生动物具有eIF4E和eIF4G的多个同源物,每种的确切功能尚不清楚。在这里,进一步研究了两个先前描述的eIF4G同源物EIF4G3和EIF4G4。在体外,两个同源物都结合EIF4AI,但是具有不同的相互作用特性。还证实了与不同的eIF4E的结合。 EIF4G3绑定EIF4E4,而EIF4G4绑定EIF4E3,这两种相互作用都需要相似的结合基序。 EIF4G3,而不是EIF4G4,与多聚A结合蛋白同源物PABP1相互作用。布氏锥虫的体内研究表明,EIF4G3和EIF4G4都是细胞质的,对生存能力至关重要。 EIF4G3的消耗导致总翻译的快速减少,而EIF4G4的消耗导致形态的变化,但没有实质性的翻译抑制作用。定点诱变用于破坏eIF4G与eIF4E或eIF4A的相互作用,从而导致不同程度的生长抑制。总体而言,结果表明,只有EIF4G3及其带帽结合伴侣EIF4E4在翻译起始中起主要作用。

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