首页> 外文OA文献 >Interactions of Eukaryotic Translation Initiation Factor 3 (eIF3) Subunit NIP1/c with eIF1 and eIF5 Promote Preinitiation Complex Assembly and Regulate Start Codon Selection
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Interactions of Eukaryotic Translation Initiation Factor 3 (eIF3) Subunit NIP1/c with eIF1 and eIF5 Promote Preinitiation Complex Assembly and Regulate Start Codon Selection

机译:真核翻译起始因子3(eIF3)亚基NIP1 / c与eIF1和eIF5的相互作用促进预初始化复合物组装并调节起始密码子的选择。

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摘要

The N-terminal domain (NTD) of NIP1/eIF3c interacts directly with eIF1 and eIF5 and indirectly through eIF5 with the eIF2-GTP-Met-\documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}{\mathit{tRNA}}_{{\mathit{i}}}^{{\mathit{Met}}}\end{equation*}\end{document} ternary complex (TC) to form the multifactor complex (MFC). We investigated the physiological importance of these interactions by mutating 16 segments spanning the NIP1-NTD. Mutations in multiple segments reduced the binding of eIF1 or eIF5 to the NIP1-NTD. Mutating a C-terminal segment of the NIP1-NTD increased utilization of UUG start codons (Sui− phenotype) and was lethal in cells expressing eIF5-G31R that is hyperactive in stimulating GTP hydrolysis by the TC at AUG codons. Both effects of this NIP1 mutation were suppressed by eIF1 overexpression, as was the Sui− phenotype conferred by eIF5-G31R. Mutations in two N-terminal segments of the NIP1-NTD suppressed the Sui− phenotypes produced by the eIF1-D83G and eIF5-G31R mutations. From these and other findings, we propose that the NIP1-NTD coordinates an interaction between eIF1 and eIF5 that inhibits GTP hydrolysis at non-AUG codons. Two NIP1-NTD mutations were found to derepress GCN4 translation in a manner suppressed by overexpressing the TC, indicating that MFC formation stimulates TC recruitment to 40S ribosomes. Thus, the NIP1-NTD is required for efficient assembly of preinitiation complexes and also regulates the selection of AUG start codons in vivo.
机译:NIP1 / eIF3c的N末端域(NTD)直接与eIF1和eIF5交互,并通过eIF2-GTP-Met- \ documentclass [12pt] {minimum} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage通过eIF5间接交互{amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} {\ mathit {tRNA}} __ {{\ mathit {i}}} ^ {{\ mathit {Met}}} \ end {equation *} \ end {document}三元复合物(TC),形成多因素复合物(MFC)。我们通过突变跨越NIP1-NTD的16个片段来研究这些相互作用的生理重要性。多个片段中的突变减少了eIF1或eIF5与NIP1-NTD的结合。突变NIP1-NTD的C末端片段会增加UUG起始密码子(Sui-表型)的利用率,并且在表达eIF5-G31R的细胞中具有致死性,而eIF5-G31R在由AUG密码子通过TC刺激GTP水解中表现出高活性。 NIF1突变的两种作用都被eIF1过表达抑制,eIF5-G31R赋予Sui-表型也是如此。 NIP1-NTD的两个N末端片段中的突变抑制了eIF1-D83G和eIF5-G31R突变产生的Sui表型。根据这些发现和其他发现,我们建议NIP1-NTD协调eIF1和eIF5之间的相互作用,从而抑制非AUG密码子的GTP水解。发现两个NIP1-NTD突变以过表达TC抑制的方式抑制GCN4翻译,这表明MFC的形成刺激TC募集到40S核糖体。因此,NIP1-NTD是有效组装预起始复合物所必需的,并且还调节了体内AUG起始密码子的选择。

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