Department of Molecular, Cell, and Developmental Biology, University of California at Santa Cruz, Santa Cruz, CA, USA.
Department of Molecular, Cell, and Developmental Biology, University of California at Santa Cruz, Santa Cruz, CA, USA.
Semin Cell Dev Biol. 2024 Feb 15;154(Pt B):131-137. doi: 10.1016/j.semcdb.2023.03.009. Epub 2023 Mar 22.
Cells entrust ribosomes with the critical task of identifying problematic mRNAs and facilitating their degradation. Ribosomes must communicate when they encounter and stall on an aberrant mRNA, lest they expose the cell to toxic and disease-causing proteins, or they jeopardize ribosome homeostasis and cellular translation. In recent years, ribosomal ubiquitination has emerged as a central signaling step in this process, and proteomic studies across labs and experimental systems show a myriad of ubiquitination sites throughout the ribosome. Work from many labs zeroed in on ubiquitination in one region of the small ribosomal subunit as being functionally significant, with the balance and exact ubiquitination sites determined by stall type, E3 ubiquitin ligases, and deubiquitinases. This review discusses the current literature surrounding ribosomal ubiquitination during translational stress and considers its role in committing translational complexes to decay.
细胞将识别有问题的 mRNA 并促进其降解的关键任务交给核糖体。核糖体在遇到并停滞在异常的 mRNA 时必须进行通讯,以免使细胞暴露于有毒和致病蛋白中,或者它们危及核糖体的动态平衡和细胞翻译。近年来,核糖体泛素化已成为该过程中的一个核心信号步骤,并且跨实验室和实验系统的蛋白质组学研究显示核糖体上存在无数的泛素化位点。来自许多实验室的工作将小核糖体亚基的一个区域中的泛素化作为功能显著的区域,其平衡和确切的泛素化位点由停滞类型、E3 泛素连接酶和去泛素化酶决定。本综述讨论了翻译应激过程中核糖体泛素化的最新文献,并考虑了其在使翻译复合物发生衰变中的作用。