核糖体
真核核糖体
翻译(生物学)
细胞生物学
蛋白质生物合成
核糖体蛋白
核糖体RNA
A站点
蛋白质亚单位
化学
真核大核糖体亚单位
生物
核糖体分析
EIF4E公司
信使核糖核酸
真核小核糖体亚单位
平动调节
内部核糖体进入位点
泛素
生物物理学
生物化学
5.8S核糖体RNA
核糖体结合位点
T形臂
起始因子
真核翻译
终止密码子
转移RNA
易位
蛋白质降解
作者
Sihan Li,Okuto Shounai,Misaki Kato,Ken Ikeuchi,Toshifumi Inada
标识
DOI:10.1038/s41467-025-66026-x
摘要
Individual stalling of catalytically inactive ribosomes at the start codon triggers ubiquitination of ribosomal protein uS3 and subsequent 18S rRNA decay. While collisions between ribosomes during translation elongation represent a more widespread form of translation perturbation, their impact on ribosome stability remains unknown. Here, we clarify a bifurcation in ubiquitination-mediated ribosome turnover, identifying a collision-induced branch of uS3 ubiquitination and small subunit destabilization in yeast. This pathway eliminates not only non-functional ribosomes but also translationally active ones with a prokaryotic-like decoding center, driven by competition with wild-type ribosomes due to differing translation rates. We further show that endogenous ribosomal subunit stoichiometry shifts toward a small-subunit-shortage state via ubiquitination upon perturbed translation triggered by the anti-cancer drug cisplatin and the growth phase transition. These findings reveal a mechanism by which ribosome dynamics generally affects ribosome stability, implicating ribosome dysfunction, heterogeneity, and stress-related translational disturbances in small subunit degradation.
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