Roshan Poonam, Biswas Aparna, Anagnos Stella, Luebbers Riley, Harish Kavya, Ahmed Sinthyia, Li Megan, Nguyen Nicholas, Zhou Gao, Tedeschi Frank, Hathuc Vivian, Lin Zhenguo, Hamilton Zachary, Origanti Sofia
bioRxiv. 2024 Jul 10:2024.06.24.600220. doi: 10.1101/2024.06.24.600220.
Moderating the pool of active ribosomal subunits is critical for maintaining global translation rates. A factor crucial for modulating the 60S ribosomal subunits is eukaryotic translation initiation factor 6. Release of eIF6 from 60S is essential to permit 60S interactions with 40S. Here, using the N106S mutant of eIF6, we show that disrupting eIF6 interaction with 60S leads to an increase in vacant 80S. It further highlights a dichotomy in the anti-association activity of eIF6 that is distinct from its role in 60S biogenesis and shows that the nucleolar localization of eIF6 is not dependent on uL14-BCCIP interactions. Limiting active ribosomal pools markedly deregulates translation especially in mitosis and leads to chromosome segregation defects, mitotic exit delays and mitotic catastrophe. Ribo-Seq analysis of the eIF6-N106S mutant shows a significant downregulation in the translation efficiencies of mitotic factors and specifically transcripts with long 3'UTRs. eIF6-N106S mutation also limits cancer invasion, and this role is correlated with the overexpression of eIF6 only in high-grade invasive cancers suggesting that deregulation of eIF6 is probably not an early event in cancers. Thus, this study highlights the segregation of eIF6 functions and its role in moderating 80S availability for mitotic translation and cancer progression.
调节活性核糖体亚基库对于维持整体翻译速率至关重要。真核生物翻译起始因子6是调节60S核糖体亚基的关键因素。eIF6从60S释放对于允许60S与40S相互作用至关重要。在这里,我们使用eIF6的N106S突变体表明,破坏eIF6与60S的相互作用会导致空的80S增加。这进一步突出了eIF6抗缔合活性的二分法,这与其在60S生物合成中的作用不同,并表明eIF6的核仁定位不依赖于uL14 - BCCIP相互作用。限制活性核糖体库会显著失调翻译,尤其是在有丝分裂过程中,并导致染色体分离缺陷、有丝分裂退出延迟和有丝分裂灾难。对eIF6 - N106S突变体的核糖体测序分析表明,有丝分裂因子的翻译效率以及特别是具有长3'UTR的转录本的翻译效率显著下调。eIF6 - N106S突变也限制癌症侵袭,并且这种作用仅与高级别侵袭性癌症中eIF6的过表达相关,这表明eIF6的失调可能不是癌症中的早期事件。因此,这项研究突出了eIF6功能的分离及其在调节有丝分裂翻译和癌症进展中80S可用性方面的作用。