首页> 外文OA文献 >The C-Terminal Region of Eukaryotic Translation Initiation Factor 3a (eIF3a) Promotes mRNA Recruitment, Scanning, and, Together with eIF3j and the eIF3b RNA Recognition Motif, Selection of AUG Start Codons ▿
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The C-Terminal Region of Eukaryotic Translation Initiation Factor 3a (eIF3a) Promotes mRNA Recruitment, Scanning, and, Together with eIF3j and the eIF3b RNA Recognition Motif, Selection of AUG Start Codons ▿

机译:真核翻译起始因子3a(eIF3a)的C末端区域促进mRNA的募集,扫描,并与eIF3j和eIF3b RNA识别基元一起选择AUG起始密码子。

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摘要

The C-terminal domain (CTD) of the a/Tif32 subunit of budding yeast eukaryotic translation initiation factor 3 (eIF3) interacts with eIF3 subunits j/Hcr1 and b/Prt1 and can bind helices 16 to 18 of 18S rRNA, suggesting proximity to the mRNA entry channel of the 40S subunit. We have identified substitutions in the conserved Lys-Glu-Arg-Arg (KERR) motif and in residues of the nearby box6 element of the a/Tif32 CTD that impair mRNA recruitment by 43S preinitiation complexes (PICs) and confer phenotypes indicating defects in scanning and start codon recognition. The normally dispensable CTD of j/Hcr1 is required for its binding to a/Tif32 and to mitigate the growth defects of these a/Tif32 mutants, indicating physical and functional interactions between these two domains. The a/Tif32 CTD and the j/Hcr1 N-terminal domain (NTD) also interact with the RNA recognition motif (RRM) in b/Prt1, and mutations in both subunits that disrupt their interactions with the RRM increase leaky scanning of an AUG codon. These results, and our demonstration that the extreme CTD of a/Tif32 binds to Rps2 and Rps3, lead us to propose that the a/Tif32 CTD directly stabilizes 43S subunit-mRNA interaction and that the b/Prt1-RRM-j/Hcr1-a/Tif32-CTD module binds near the mRNA entry channel and regulates the transition between scanning-conducive and initiation-competent conformations of the PIC.
机译:发芽酵母真核翻译起始因子3(eIF3)的a / Tif32亚基的C末端结构域(CTD)与eIF3亚基j / Hcr1和b / Prt1相互作用,并且可以结合18S rRNA的螺旋16至18。 40S亚基的mRNA进入通道。我们已经确定了保守的Lys-Glu-Arg-Arg(KERR)基序和a / Tif32 CTD附近box6元件的残基中的取代,这些取代会损害43S预起始复合物(PIC)的mRNA募集并赋予表型,表明扫描缺陷并开始密码子识别。 j / Hcr1的正常可分配CTD是其与a / Tif32结合并减轻这些a / Tif32突变体的生长缺陷所必需的,这表明这两个域之间存在物理和功能相互作用。 a / Tif32 CTD和j / Hcr1 N末端结构域(NTD)也与b / Prt1中的RNA识别基序(RRM)相互作用,两个亚基中的突变破坏了它们与RRM的相互作用,增加了AUG的漏检密码子。这些结果以及我们对a / Tif32的极端CTD与Rps2和Rps3结合的证明,促使我们提出a / Tif32 CTD直接稳定43S亚基与mRNA的相互作用,以及b / Prt1-RRM-j / Hcr1- a / Tif32-CTD模块在mRNA进入通道附近结合,并调节PIC的扫描诱导构象和起始能构象之间的过渡。

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