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核内释放 eIF1 限制有丝分裂中起始密码子的选择。

Nuclear release of eIF1 restricts start-codon selection during mitosis.

机构信息

Whitehead Institute for Biomedical Research, Cambridge, MA, USA.

Department of Biology, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

Nature. 2024 Nov;635(8038):490-498. doi: 10.1038/s41586-024-08088-3. Epub 2024 Oct 23.

Abstract

Regulated start-codon selection has the potential to reshape the proteome through the differential production of upstream open reading frames, canonical proteins, and alternative translational isoforms. However, conditions under which start codon selection is altered remain poorly defined. Here, using transcriptome-wide translation-initiation-site profiling, we reveal a global increase in the stringency of start-codon selection during mammalian mitosis. Low-efficiency initiation sites are preferentially repressed in mitosis, resulting in pervasive changes in the translation of thousands of start sites and their corresponding protein products. This enhanced stringency of start-codon selection during mitosis results from increased association between the 40S ribosome and the key regulator of start-codon selection, eIF1. We find that increased eIF1-40S ribosome interaction during mitosis is mediated by the release of a nuclear pool of eIF1 upon nuclear envelope breakdown. Selectively depleting the nuclear pool of eIF1 eliminates the change to translational stringency during mitosis, resulting in altered synthesis of thousands of protein isoforms. In addition, preventing mitotic translational rewiring results in substantially increased cell death and decreased mitotic slippage in cells that experience a mitotic delay induced by anti-mitotic chemotherapies. Thus, cells globally control stringency of translation initiation, which has critical roles during the mammalian cell cycle in preserving mitotic cell physiology.

摘要

受调控的起始密码子选择有可能通过差异产生上游开放阅读框、规范蛋白和翻译后替代异构体来重塑蛋白质组。然而,改变起始密码子选择的条件仍未得到很好的定义。在这里,我们使用全转录组翻译起始位点分析,揭示了哺乳动物有丝分裂过程中起始密码子选择严格性的全局增加。低效起始位点在有丝分裂中优先被抑制,导致数千个起始位点及其相应蛋白质产物的翻译普遍发生变化。这种有丝分裂过程中起始密码子选择严格性的增强是由于 40S 核糖体与起始密码子选择的关键调节因子 eIF1 之间的关联增加所致。我们发现,有丝分裂过程中 eIF1-40S 核糖体相互作用的增加是由核膜破裂时核内 eIF1 池的释放介导的。选择性耗尽核内 eIF1 池可消除有丝分裂过程中翻译严格性的改变,导致数千种蛋白质异构体的合成发生改变。此外,防止有丝分裂翻译重排会导致经历抗有丝分裂化疗诱导的有丝分裂延迟的细胞中细胞死亡显著增加和有丝分裂滑溜减少。因此,细胞全局控制翻译起始的严格性,这在哺乳动物细胞周期中对维持有丝分裂细胞生理学具有关键作用。

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