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首页> 外文期刊>Journal of Molecular Biology >The indispensable N-terminal half of eIF3j/HCR1 cooperates with its structurally conserved binding partner eIF3b/PRT1-RRM and with eIF1A in stringent AUG selection.
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The indispensable N-terminal half of eIF3j/HCR1 cooperates with its structurally conserved binding partner eIF3b/PRT1-RRM and with eIF1A in stringent AUG selection.

机译:在严格的AUG选择中,eIF3j / HCR1不可或缺的N末端一半与其结构保守的结合伴侣eIF3b / PRT1-RRM以及eIF1A协同作用。

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摘要

Despite recent progress in our understanding of the numerous functions of individual subunits of eukaryotic translation initiation factor (eIF) 3, little is known on the molecular level. Using NMR spectroscopy, we determined the first solution structure of an interaction between eIF3 subunits. We revealed that a conserved tryptophan residue in the human eIF3j N-terminal acidic motif (NTA) is held in the helix alpha1 and loop 5 hydrophobic pocket of the human eIF3b RNA recognition motif (RRM). Mutating the corresponding "pocket" residues in its yeast orthologue reduces cellular growth rate, eliminates eIF3j/HCR1 association with eIF3b/PRT1 in vitro and in vivo, affects 40S occupancy of eIF3, and produces a leaky scanning defect indicative of a deregulation of the AUG selection process. Unexpectedly, we found that the N-terminal half of eIF3j/HCR1 containing the NTA is indispensable and sufficient for wild-type growth of yeast cells. Furthermore, we demonstrate that deletion of either j/HCR1 or its N-terminal half only, or mutation of the key tryptophan residues results in the severe leaky scanning phenotype partially suppressible by overexpressed eIF1A, which is thought to stabilize properly formed preinitiation complexes at the correct start codon. These findings indicate that eIF3j/HCR1 remains associated with the scanning preinitiation complexes and does not dissociate from the small ribosomal subunit upon mRNA recruitment, as previously believed. Finally, we provide further support for earlier mapping of the ribosomal binding site for human eIF3j by identifying specific interactions of eIF3j/HCR1 with small ribosomal proteins RPS2 and RPS23 located in the vicinity of the mRNA entry channel. Taken together, we propose that eIF3j/HCR1 closely cooperates with the eIF3b/PRT1 RRM and eIF1A on the ribosome to ensure proper formation of the scanning-arrested conformation required for stringent AUG recognition.
机译:尽管最近我们对真核翻译起始因子(eIF)3各个亚基的众多功能的了解有所进展,但在分子水平上所知甚少。使用NMR光谱,我们确定了eIF3亚基之间相互作用的第一个溶液结构。我们揭示了人类eIF3b N端酸性基序(NTA)中的保守色氨酸残基被保存在人类eIF3b RNA识别基序(RRM)的螺旋alpha1和环5疏水口袋中。突变其酵母直向同源物中相应的“口袋”残基可降低细胞生长速率,在体内外消除eIF3j / HCR1与eIF3b / PRT1的缔合,影响eIF3的40S占有率,并产生泄漏性扫描缺陷,表明AUG失控选择过程。出乎意料的是,我们发现包含NTA的eIF3j / HCR1的N端一半对于酵母细胞的野生型生长是必不可少的。此外,我们证明j / HCR1或其仅N末端的一半缺失或关键色氨酸残基的突变会导致严重的渗漏扫描表型,部分被过度表达的eIF1A抑制,这被认为可以稳定在细胞中正确形成的预起始复合物。正确的起始密码子。这些发现表明,eIF3j / HCR1仍然与扫描前起始复合物相关,并且在募集mRNA后并未与小的核糖体亚基解离,如先前所信。最后,我们通过鉴定eIF3j / HCR1与位于mRNA输入通道附近的小核糖体蛋白RPS2和RPS23的特异性相互作用,为人eIF3j的核糖体结合位点的早期定位提供了进一步的支持。两者合计,我们建议eIF3j / HCR1与核糖体上的eIF3b / PRT1 RRM和eIF1A紧密配合,以确保正确形成严格的AUG识别所需的扫描阻滞构象。

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