Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut, United States of America.
Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts, United States of America.
PLoS Biol. 2018 Sep 12;16(9):e2005903. doi: 10.1371/journal.pbio.2005903. eCollection 2018 Sep.
Ribosome-binding proteins function broadly in protein synthesis, gene regulation, and cellular homeostasis, but the complete complement of functional ribosome-bound proteins remains unknown. Using quantitative mass spectrometry, we identified late-annotated short open reading frame 2 (Lso2) as a ribosome-associated protein that is broadly conserved in eukaryotes. Genome-wide crosslinking and immunoprecipitation of Lso2 and its human ortholog coiled-coil domain containing 124 (CCDC124) recovered 25S ribosomal RNA in a region near the A site that overlaps the GTPase activation center. Consistent with this location, Lso2 also crosslinked to most tRNAs. Ribosome profiling of yeast lacking LSO2 (lso2Δ) revealed global translation defects during recovery from stationary phase with translation of most genes reduced more than 4-fold. Ribosomes accumulated at start codons, were depleted from stop codons, and showed codon-specific changes in occupancy in lso2Δ. These defects, and the conservation of the specific ribosome-binding activity of Lso2/CCDC124, indicate broadly important functions in translation and physiology.
核糖体结合蛋白在蛋白质合成、基因调控和细胞内稳态中广泛发挥作用,但完整的功能性核糖体结合蛋白组仍不清楚。使用定量质谱分析,我们鉴定出晚期注释的短开放阅读框 2(Lso2)是一种核糖体相关蛋白,在真核生物中广泛保守。Lso2 及其人类同源物卷曲螺旋结构域包含 124(CCDC124)的全基因组交联和免疫沉淀回收了 A 位点附近的 25S 核糖体 RNA 区域,该区域与 GTP 酶激活中心重叠。与该位置一致,Lso2 还与大多数 tRNA 交联。酵母中缺乏 LSO2(lso2Δ)的核糖体谱分析显示,在从静止期恢复过程中存在全局翻译缺陷,大多数基因的翻译减少了 4 倍以上。核糖体在起始密码子处积累,在终止密码子处耗尽,并在 lso2Δ 中显示出特定密码子的占有率变化。这些缺陷以及 Lso2/CCDC124 特定的核糖体结合活性的保守性表明其在翻译和生理学中具有广泛的重要功能。