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Binding of eukaryotic initiation factor 3 to ribosomal 40S subunits and its role in ribosomal dissociation and anti-association

机译:真核生物起始因子3与核糖体40S亚基的结合及其在核糖体解离和抗结合中的作用

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摘要

The multisubunit eukaryotic initiation factor (eIF) 3 plays various roles in translation initiation that all involve interaction with 40S ribosomal subunits. eIF3 can be purified in two forms: with or without the loosely associated eIF3j subunit (eIF3j+ and eIF3j−, respectively). Although unlike eIF3j+, eIF3j− does not bind 40S subunits stably enough to withstand sucrose density gradient centrifugation, we found that in addition to the known stabilization of the eIF3/40S subunit interaction by the eIF2•GTP•Met-tRNAiMet ternary complex, eIF3j−/40S subunit complexes were also stabilized by single-stranded RNA or DNA cofactors that were at least 25 nt long and could be flanked by stable hairpins. Of all homopolymers, oligo(rU), oligo(dT), and oligo(dC) stimulated the eIF3/40S subunit interaction, whereas oligo(rA), oligo(rG), oligo(rC), oligo(dA), and oligo(dG) did not. Oligo(U) or oligo(dT) sequences interspersed by other bases also promoted this interaction. The ability of oligonucleotides to stimulate eIF3/40S subunit association correlated with their ability to bind to the 40S subunit, most likely to its mRNA-binding cleft. Although eIF3j+ could bind directly to 40S subunits, neither eIF3j− nor eIF3j+ alone was able to dissociate 80S ribosomes or protect 40S and 60S subunits from reassociation. Significantly, the dissociation/anti-association activities of both forms of eIF3 became apparent in the presence of either eIF2-ternary complexes or any oligonucleotide cofactor that promoted eIF3/40S subunit interaction. Ribosomal dissociation and anti-association activities of eIF3 were strongly enhanced by eIF1. The potential biological role of stimulation of eIF3/40S subunit interaction by an RNA cofactor in the absence of eIF2-ternary complex is discussed.
机译:多亚基真核起始因子(eIF)3在翻译起始中发挥各种作用,都涉及与40S核糖体亚基的相互作用。 eIF3可以两种形式纯化:带有或不带有松散关联的eIF3j亚基(分别为eIF3j +和eIF3j-)。尽管与eIF3j +不同,eIF3j-不能稳定地结合40S亚基以抵抗蔗糖密度梯度离心,但我们发现,除了已知的eIF2•GTP•Met-tRNAi Met <三元复合物,eIF3j / 40S亚基复合物也被单链RNA或DNA辅因子稳定,该单链RNA或DNA辅因子的长度至少为25 nt,并可能侧翼为稳定的发夹。在所有均聚物中,oligo(rU),oligo(dT)和oligo(dC)刺激了eIF3 / 40S亚基相互作用,而oligo(rA),oligo(rG),oligo(rC),oligo(dA)和oligo (dG)没有。被其他碱基穿插的Oligo(U)或oligo(dT)序列也促进了这种相互作用。寡核苷酸刺激eIF3 / 40S亚基缔合的能力与其结合40S亚基(最可能与其mRNA结合裂口)的能力有关。尽管eIF3j +可以直接与40S亚基结合,但单独的eIF3j-和eIF3j +都不能使80S核糖体解离或保护40S和60S亚基免于再结合。值得注意的是,在存在eIF2三元复合物或任何促进eIF3 / 40S亚基相互作用的寡核苷酸辅因子的情况下,两种形式的eIF3的解离/抗缔合活性均变得明显。 eIF1大大增强了eIF3的核糖体解离和抗缔合活性。讨论了在不存在eIF2-三元复合物的情况下,通过RNA辅因子刺激eIF3 / 40S亚基相互作用的潜在生物学作用。

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