Munro June, Gillen Sarah L, Mitchell Louise, Laing Sarah, Karim Saadia A, Rink Curtis J, Waldron Joseph A, Bushell Martin
Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Bearsden, Glasgow G61 1BD, UK.
School of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Bearsden, Glasgow G61 1QH, UK.
Cancers (Basel). 2023 Aug 5;15(15):3985. doi: 10.3390/cancers15153985.
The protein output of different mRNAs can vary by two orders of magnitude; therefore, it is critical to understand the processes that control gene expression operating at the level of translation. Translatome-wide techniques, such as polysome profiling and ribosome profiling, are key methods for determining the translation rates occurring on specific mRNAs. These techniques are now widely used in cell lines; however, they are underutilised in tissues and cancer models. Ribonuclease (RNase) expression is often found to be higher in complex primary tissues in comparison to cell lines. Methods used to preserve RNA during lysis often use denaturing conditions, which need to be avoided when maintaining the interaction and position of the ribosome with the mRNA is required. Here, we detail the cell lysis conditions that produce high-quality RNA from several different tissues covering a range of endogenous RNase expression levels. We highlight the importance of RNA integrity for accurate determination of the global translation status of the cell as determined by polysome gradients and discuss key aspects to optimise for accurate assessment of the translatome from primary mouse tissue.
不同mRNA的蛋白质产出可能相差两个数量级;因此,了解在翻译水平上控制基因表达的过程至关重要。全转录组技术,如多核糖体谱分析和核糖体谱分析,是确定特定mRNA上翻译速率的关键方法。这些技术目前在细胞系中广泛使用;然而,它们在组织和癌症模型中的应用不足。与细胞系相比,在复杂的原代组织中经常发现核糖核酸酶(RNase)的表达更高。在裂解过程中用于保存RNA的方法通常采用变性条件,而当需要维持核糖体与mRNA的相互作用和位置时,这些条件需要避免。在这里,我们详细介绍了从几种不同组织中产生高质量RNA的细胞裂解条件,这些组织涵盖了一系列内源性RNase表达水平。我们强调了RNA完整性对于通过多核糖体梯度准确确定细胞整体翻译状态的重要性,并讨论了从原代小鼠组织中准确评估翻译组时需要优化的关键方面。