Department of Biological Sciences, Columbia University, New York, NY, 10027, USA.
Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY, 10032, USA.
Proteomics. 2021 Jan;21(2):e2000125. doi: 10.1002/pmic.202000125. Epub 2020 Dec 2.
The role of the ribosome in the regulation of gene expression has come into increased focus. It is proposed that ribosomes are catalytic engines capable of changing their protein composition in response to environmental stimuli. Time-resolved cryo-electron microscopy (cryo-EM) techniques are employed to identify quantitative changes in the protein composition and structure of the Saccharomyces cerevisiae 80S ribosomes after shifting the carbon source from glucose to glycerol. Using cryo-EM combined with the computational classification approach, it is found that a fraction of the yeast cells' 80S ribosomes lack ribosomal proteins at the entrance and exit sites for tRNAs, including uL16(RPL10), eS1(RPS1), uS11(RPS14A/B), and eS26(RPS26A/B). This fraction increased after a change from glucose to glycerol medium. The quantitative structural analysis supports the hypothesis that ribosomes are dynamic complexes that alter their composition in response to changes in growth or environmental conditions.
核糖体在基因表达调控中的作用越来越受到关注。有人提出,核糖体是能够根据环境刺激改变其蛋白质组成的催化引擎。时间分辨的冷冻电子显微镜(cryo-EM)技术被用于鉴定在将碳源从葡萄糖切换到甘油后,酿酒酵母 80S 核糖体的蛋白质组成和结构的定量变化。使用 cryo-EM 结合计算分类方法,发现酵母细胞的 80S 核糖体中有一部分核糖体蛋白在 tRNA 的入口和出口处缺失,包括 uL16(RPL10)、eS1(RPS1)、uS11(RPS14A/B)和 eS26(RPS26A/B)。这种比例在从葡萄糖培养基转变为甘油培养基后增加。定量结构分析支持这样的假设,即核糖体是动态复合物,它们会根据生长或环境条件的变化改变其组成。