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小核糖体蛋白 RPS0 通过与 eIF3a/TIF32 亚基的直接接触,介导 40S 与 eIF3 的结合,从而刺激翻译起始。

Small ribosomal protein RPS0 stimulates translation initiation by mediating 40S-binding of eIF3 via its direct contact with the eIF3a/TIF32 subunit.

机构信息

Laboratory of Regulation of Gene Expression, Institute of Microbiology ASCR, v.v.i., Prague, The Czech Republic.

出版信息

PLoS One. 2012;7(7):e40464. doi: 10.1371/journal.pone.0040464. Epub 2012 Jul 5.

Abstract

The ribosome translates information encoded by mRNAs into proteins in all living cells. In eukaryotes, its small subunit together with a number of eukaryotic initiation factors (eIFs) is responsible for locating the mRNA's translational start to properly decode the genetic message that it carries. This multistep process requires timely and spatially coordinated placement of eIFs on the ribosomal surface. In our long-standing pursuit to map the 40S-binding site of one of the functionally most complex eIFs, yeast multisubunit eIF3, we identified several interactions that placed its major body to the head, beak and shoulder regions of the solvent-exposed side of the 40S subunit. Among them is the interaction between the N-terminal domain (NTD) of the a/TIF32 subunit of eIF3 and the small ribosomal protein RPS0A, residing near the mRNA exit channel. Previously, we demonstrated that the N-terminal truncation of 200 residues in tif32-Δ8 significantly reduced association of eIF3 and other eIFs with 40S ribosomes in vivo and severely impaired translation reinitiation that eIF3 ensures. Here we show that not the first but the next 200 residues of a/TIF32 specifically interact with RPS0A via its extreme C-terminal tail (CTT). Detailed analysis of the RPS0A conditional depletion mutant revealed a marked drop in the polysome to monosome ratio suggesting that the initiation rates of cells grown under non-permissive conditions were significantly impaired. Indeed, amounts of eIF3 and other eIFs associated with 40S subunits in the pre-initiation complexes in the RPS0A-depleted cells were found reduced; consistently, to the similar extent as in the tif32-Δ8 cells. Similar but less pronounced effects were also observed with the viable CTT-less mutant of RPS0A. Together we conclude that the interaction between the flexible RPS0A-CTT and the residues 200-400 of the a/TIF32-NTD significantly stimulates attachment of eIF3 and its associated eIFs to small ribosomal subunits in vivo.

摘要

核糖体将 mRNA 编码的信息翻译成所有活细胞中的蛋白质。在真核生物中,其小亚基与许多真核起始因子 (eIF) 一起负责定位 mRNA 的翻译起始,以正确解码其携带的遗传信息。这个多步骤的过程需要及时和空间协调地将 eIF 放置在核糖体表面上。在我们长期以来寻找一种功能最复杂的 eIF 之一,酵母多亚基 eIF3 的 40S 结合位点的过程中,我们确定了几个相互作用,将其主要部分放置在溶剂暴露的 40S 亚基的头部、喙部和肩部区域。其中包括 eIF3 的 a/TIF32 亚基的 N 端结构域 (NTD) 与小核糖体蛋白 RPS0A 之间的相互作用,RPS0A 位于 mRNA 出口通道附近。之前,我们证明了 tif32-Δ8 中的 200 个残基的 N 端截断在体内显著减少了 eIF3 和其他 eIF 与 40S 核糖体的结合,并严重损害了 eIF3 确保的重新起始翻译。在这里,我们表明,不是第一个而是 a/TIF32 的下一个 200 个残基通过其极端 C 端尾巴 (CTT) 与 RPS0A 特异性相互作用。对 RPS0A 条件性耗尽突变体的详细分析显示,多核糖体到单核糖体的比例明显下降,表明在非许可条件下生长的细胞的起始速率受到严重损害。事实上,在 RPS0A 耗尽细胞中,与起始复合物中的 40S 亚基结合的 eIF3 和其他 eIF 的量减少;一致地,与 tif32-Δ8 细胞中的减少程度相似。RPS0A 的有活力但 CTT 缺失的突变体也观察到了类似但不太明显的效果。总的来说,我们得出结论,柔性 RPS0A-CTT 与 a/TIF32-NTD 的 200-400 个残基之间的相互作用显著刺激了 eIF3 及其相关 eIF 在体内与小核糖体亚基的附着。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32b1/3390373/6e1de6ae5b69/pone.0040464.g001.jpg

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