Laboratory of Regulation of Gene Expression, Institute of Microbiology AVCR, v.v.i., Prague, the Czech Republic.
Nucleic Acids Res. 2012 Mar;40(6):2683-99. doi: 10.1093/nar/gkr1083. Epub 2011 Nov 28.
Several subunits of the multifunctional eukaryotic translation initiation factor 3 (eIF3) contain well-defined domains. Among them is the conserved bipartite PCI domain, typically serving as the principal scaffold for multisubunit 26S proteasome lid, CSN and eIF3 complexes, which constitutes most of the C-terminal region of the c/NIP1 subunit. Interestingly, the c/NIP1-PCI domain is exceptional in that its deletion, despite being lethal, does not affect eIF3 integrity. Here, we show that a short C-terminal truncation and two clustered mutations directly disturbing the PCI domain produce lethal or slow growth phenotypes and significantly reduce amounts of 40S-bound eIF3 and eIF5 in vivo. The extreme C-terminus directly interacts with blades 1-3 of the small ribosomal protein RACK1/ASC1, which is a part of the 40S head, and, consistently, deletion of the ASC1 coding region likewise affects eIF3 association with ribosomes. The PCI domain per se shows strong but unspecific binding to RNA, for the first time implicating this typical protein-protein binding domain in mediating protein-RNA interactions also. Importantly, as our clustered mutations severely reduce RNA binding, we conclude that the c/NIP1 C-terminal region forms an important intermolecular bridge between eIF3 and the 40S head region by contacting RACK1/ASC1 and most probably 18S rRNA.
多功能真核翻译起始因子 3(eIF3) 的几个亚基含有定义明确的结构域。其中包括保守的双组分 PCI 结构域,通常作为多亚基 26S 蛋白酶体盖、CSN 和 eIF3 复合物的主要支架,该复合物构成了 c/NIP1 亚基 C 端区域的大部分。有趣的是,c/NIP1-PCI 结构域是特殊的,尽管其缺失是致命的,但不会影响 eIF3 的完整性。在这里,我们表明,短的 C 端截断和两个聚集的突变直接干扰 PCI 结构域会产生致命或生长缓慢的表型,并显著减少体内结合 40S 的 eIF3 和 eIF5 的量。极端的 C 端直接与小核糖体蛋白 RACK1/ASC1 的前 1-3 个叶片相互作用,这是 40S 头部的一部分,并且一致地,删除 ASC1 编码区同样会影响 eIF3 与核糖体的结合。PCI 结构域本身对 RNA 具有强烈但非特异性的结合,这首次表明该典型的蛋白质-蛋白质结合结构域也参与介导蛋白质-RNA 相互作用。重要的是,由于我们的聚集突变严重降低了 RNA 结合,我们得出结论,c/NIP1 C 端区域通过与 RACK1/ASC1 并很可能与 18S rRNA 接触,形成了 eIF3 和 40S 头部区域之间的重要分子间桥。