Aretakis James R, Al-Husini Nadra, Schrader Jared M
Department of Biological Sciences, Wayne State University, Detroit, MI, United States.
Department of Biological Sciences, Wayne State University, Detroit, MI, United States.
Methods Enzymol. 2018;612:443-465. doi: 10.1016/bs.mie.2018.07.008. Epub 2018 Aug 31.
Bacterial cell division is the result of a productive round of the cell cycle to yield two daughter cells. The cell cycle is highly coordinated in Caulobacter crescentus where it is driven by a cell cycle gene-regulatory network that coordinates gene expression with the major cell cycle events such as chromosome replication and cell division. Recent ribosomes profiling data showed that 484 genes undergo changes in translation efficiency during the cell cycle, suggesting a broad role for translational control in cell cycle regulation. In this chapter, we focus on how to perform ribosome profiling to measure the translation efficiency across cellular mRNAs at key stages in the Caulobacter cell cycle. This methodology relies on the high-yield ludox gradient synchronization of Caulobacter cells followed by ribosome profiling to measure ribosome density and total RNA-seq to measure mRNA levels.
细菌细胞分裂是一轮高效细胞周期的结果,可产生两个子细胞。新月柄杆菌的细胞周期高度协调,由一个细胞周期基因调控网络驱动,该网络将基因表达与主要细胞周期事件(如染色体复制和细胞分裂)相协调。最近的核糖体谱分析数据表明,484个基因在细胞周期中经历翻译效率的变化,这表明翻译控制在细胞周期调控中具有广泛作用。在本章中,我们重点介绍如何进行核糖体谱分析,以测量新月柄杆菌细胞周期关键阶段整个细胞mRNA的翻译效率。这种方法依赖于新月柄杆菌细胞的高产量硅溶胶梯度同步化,随后进行核糖体谱分析以测量核糖体密度,并进行全RNA测序以测量mRNA水平。