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首页> 外文期刊>Nucleic Acids Research >Structural analysis of an eIF3 subcomplex reveals conserved interactions required for a stable and proper translation pre-initiation complex assembly
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Structural analysis of an eIF3 subcomplex reveals conserved interactions required for a stable and proper translation pre-initiation complex assembly

机译:对eIF3亚复合物的结构分析揭示了稳定和正确的翻译前起始复合物组装所需的保守相互作用

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Translation initiation factor eIF3 acts as the key orchestrator of the canonical initiation pathway in eukaryotes, yet its structure is greatly unexplored. We report the 2.2 A resolution crystal structure of the complex between the yeast seven-bladed beta-propeller eIF3i/TIF34 and a C-terminal alpha-helix of eIF3b/PRT1, which reveals universally conserved interactions. Mutating these interactions displays severe growth defects and eliminates association of eIF3i/TIF34 and strikingly also eIF3g/TIF35 with eIF3 and 40S subunits in vivo. Unexpectedly, 40S-association of the remaining eIF3 subcomplex and eIF5 is likewise destabilized resulting in formation of aberrant pre-initiation complexes (PICs) containing eIF2 and eIF1, which critically compromises scanning arrest on mRNA at its AUG start codon suggesting that the contacts between mRNA and ribosomal decoding site are impaired. Remarkably, overexpression of eIF3g/TIF35 suppresses the leaky scanning and growth defects most probably by preventing these aberrant PICs to form. Leaky scanning is also partially suppressed by eIF1, one of the key regulators of AUG recognition, and its mutant sui1(G107R) but the mechanism differs. We conclude that the C-terminus of eIF3b/PRT1 orchestrates co-operative recruitment of eIF3i/TIF34 and eIF3g/TIF35 to the 40S subunit for a stable and proper assembly of 48S pre-initiation complexes necessary for stringent AUG recognition on mRNAs.
机译:翻译起始因子eIF3是真核生物中经典起始途径的关键协调者,但其结构尚未得到充分探索。我们报告了酵母七叶β螺旋桨eIF3i / TIF34与eIF3b / PRT1的C末端α-螺旋之间的复合物的2.2 A分辨率晶体结构,揭示了普遍保守的相互作用。突变这些相互作用会显示出严重的生长缺陷,并消除了eIF3i / TIF34以及体内eIF3g / TIF35与eIF3和40S亚基的关联。出乎意料的是,其余eIF3亚复合物和eIF5的40S关联同样不稳定,导致形成了包含eIF2和eIF1的异常预初始化复合物(PIC),这严重损害了其AUG起始密码子对mRNA的扫描阻滞,表明mRNA之间的接触和核糖体解码位点受损。值得注意的是,eIF3g / TIF35的过度表达最有可能通过阻止这些异常PIC的形成来抑制扫描和生长缺陷。泄漏扫描也被eUG1(AUG识别的关键调节剂之一)及其突变体sui1(G107R)部分抑制,但其机理有所不同。我们得出的结论是,eIF3b / PRT1的C末端可协调eIF3i / TIF34和eIF3g / TIF35的协同募集到40S亚基,以稳定和正确地组装对mRNA进行严格AUG识别所需的48S预起始复合物。

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