Department of Cell Biology, SUNY Downstate Health Sciences University, Brooklyn, NY, USA.
Nucleic Acids Res. 2024 May 8;52(8):4627-4643. doi: 10.1093/nar/gkae087.
Ribosomal stalling induces the ribosome-associated quality control (RQC) pathway targeting aberrant polypeptides. RQC is initiated by K63-polyubiquitination of ribosomal protein uS10 located at the mRNA entrance of stalled ribosomes by the E3 ubiquitin ligase ZNF598 (Hel2 in yeast). Ubiquitinated ribosomes are dissociated by the ASC-1 complex (ASCC) (RQC-Trigger (RQT) complex in yeast). A cryo-EM structure of the ribosome-bound RQT complex suggested the dissociation mechanism, in which the RNA helicase Slh1 subunit of RQT (ASCC3 in mammals) applies a pulling force on the mRNA, inducing destabilizing conformational changes in the 40S subunit, whereas the collided ribosome acts as a wedge, promoting subunit dissociation. Here, using an in vitro reconstitution approach, we found that ribosomal collision is not a strict prerequisite for ribosomal ubiquitination by ZNF598 or for ASCC-mediated ribosome release. Following ubiquitination by ZNF598, ASCC efficiently dissociated all polysomal ribosomes in a stalled queue, monosomes assembled in RRL, in vitro reconstituted 80S elongation complexes in pre- and post-translocated states, and 48S initiation complexes, as long as such complexes contained ≥ 30-35 3'-terminal mRNA nt. downstream from the P site and sufficiently long ubiquitin chains. Dissociation of polysomes and monosomes both involved ribosomal splitting, enabling Listerin-mediated ubiquitination of 60S-associated nascent chains.
核糖体停滞会诱导靶向异常多肽的核糖体相关质量控制 (RQC) 途径。RQC 由 E3 泛素连接酶 ZNF598(酵母中的 Hel2)对位于停滞核糖体 mRNA 入口处的核糖体蛋白 uS10 进行 K63-多聚泛素化而引发。被泛素化的核糖体通过 ASC-1 复合物(ASCC)(酵母中的 RQC-触发 (RQT) 复合物)解离。核糖体结合的 RQT 复合物的冷冻电镜结构提示了解离机制,其中 RQT 的 RNA 解旋酶 Slh1 亚基(哺乳动物中的 ASCC3)对 mRNA 施加拉力,导致 40S 亚基发生不稳定的构象变化,而碰撞的核糖体充当楔子,促进亚基解离。在这里,我们使用体外重组方法发现,核糖体碰撞不是 ZNF598 对核糖体进行泛素化或 ASCC 介导的核糖体释放的严格前提。在 ZNF598 泛素化后,ASCC 能够有效地从停滞队列中的所有多核糖体、在 RRL 中组装的单体、体外重建的处于前和后易位状态的 80S 延伸复合物以及 48S 起始复合物中解离,只要这些复合物包含 ≥ 30-35 个 3'-末端 mRNA nt. 在 P 位的下游和足够长的泛素链。多核糖体和单体的解离都涉及核糖体分裂,从而使 Listerin 能够对 60S 相关新生链进行泛素化。