Gene Center and Center for Integrated Protein Science Munich, Department of Biochemistry, University of Munich, Munich, Germany.
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut, United States of America.
PLoS Biol. 2020 Jul 20;18(7):e3000780. doi: 10.1371/journal.pbio.3000780. eCollection 2020 Jul.
Cells adjust to nutrient deprivation by reversible translational shutdown. This is accompanied by maintaining inactive ribosomes in a hibernation state, in which they are bound by proteins with inhibitory and protective functions. In eukaryotes, such a function was attributed to suppressor of target of Myb protein 1 (Stm1; SERPINE1 mRNA-binding protein 1 [SERBP1] in mammals), and recently, late-annotated short open reading frame 2 (Lso2; coiled-coil domain containing short open reading frame 124 [CCDC124] in mammals) was found to be involved in translational recovery after starvation from stationary phase. Here, we present cryo-electron microscopy (cryo-EM) structures of translationally inactive yeast and human ribosomes. We found Lso2/CCDC124 accumulating on idle ribosomes in the nonrotated state, in contrast to Stm1/SERBP1-bound ribosomes, which display a rotated state. Lso2/CCDC124 bridges the decoding sites of the small with the GTPase activating center (GAC) of the large subunit. This position allows accommodation of the duplication of multilocus region 34 protein (Dom34)-dependent ribosome recycling system, which splits Lso2-containing, but not Stm1-containing, ribosomes. We propose a model in which Lso2 facilitates rapid translation reactivation by stabilizing the recycling-competent state of inactive ribosomes.
细胞通过可逆的翻译关闭来适应营养缺乏。这伴随着将无活性的核糖体维持在休眠状态,其中它们被具有抑制和保护功能的蛋白质结合。在真核生物中,这种功能归因于 Myb 蛋白 1 的靶标抑制因子 1(Stm1;哺乳动物中的丝氨酸蛋白酶抑制剂 1 [SERBP1]),最近,晚期注释的短开放阅读框 2(Lso2;哺乳动物中的卷曲螺旋结构域包含短开放阅读框 124 [CCDC124])被发现参与从静止期饥饿后的翻译恢复。在这里,我们展示了翻译失活的酵母和人类核糖体的冷冻电子显微镜(cryo-EM)结构。我们发现 Lso2/CCDC124 在非旋转状态下积累在空闲核糖体上,与显示旋转状态的 Stm1/SERBP1 结合的核糖体相反。Lso2/CCDC124 桥接小亚基的解码位点与大亚基的 GTP 酶激活中心(GAC)。该位置允许容纳多基因座 34 蛋白(Dom34)依赖性核糖体回收系统的复制,该系统分裂包含 Lso2 的核糖体,但不分裂包含 Stm1 的核糖体。我们提出了一个模型,其中 Lso2 通过稳定无活性核糖体的回收竞争状态来促进快速翻译重新激活。