Kofoed Rikke H, Betzer Cristine, Lykke-Andersen Søren, Molska Ewa, Jensen Poul H
DANDRITE - Danish Research Institute of Translational Neuroscience, Dept. of Biomedicine, Aarhus University;
DANDRITE - Danish Research Institute of Translational Neuroscience, Dept. of Biomedicine, Aarhus University.
J Vis Exp. 2018 May 3(135):57056. doi: 10.3791/57056.
When steady state RNA levels are compared between two conditions, it is not possible to distinguish whether changes are caused by alterations in production or degradation of RNA. This protocol describes a method for measurement of RNA production, using 5-Bromouridine labelling of RNA followed by immunoprecipitation, which enables investigation of RNA synthesized within a short timeframe (e.g., 1 h). The advantage of 5-Bromouridine-labelling and immunoprecipitation over the use of toxic transcriptional inhibitors, such as α-amanitin and actinomycin D, is that there are no or very low effects on cell viability during short-term use. However, because 5-Bromouridine-immunoprecipitation only captures RNA produced within the short labelling time, slowly produced as well as rapidly degraded RNA can be difficult to measure by this method. The 5-Bromouridine-labelled RNA captured by 5-Bromouridine-immunoprecipitation can be analyzed by reverse transcription, quantitative polymerase chain reaction, and next generation sequencing. All types of RNA can be investigated, and the method is not limited to measuring mRNA as is presented in this example.
当比较两种条件下的稳态RNA水平时,无法区分变化是由RNA产生的改变还是降解引起的。本方案描述了一种测量RNA产生的方法,即使用5-溴尿苷对RNA进行标记,然后进行免疫沉淀,这使得能够研究在短时间内(例如1小时)合成的RNA。与使用毒性转录抑制剂(如α-鹅膏蕈碱和放线菌素D)相比,5-溴尿苷标记和免疫沉淀的优势在于短期使用期间对细胞活力没有或只有非常低的影响。然而,由于5-溴尿苷免疫沉淀仅捕获在短标记时间内产生的RNA,缓慢产生以及快速降解的RNA可能难以用这种方法测量。通过5-溴尿苷免疫沉淀捕获的5-溴尿苷标记的RNA可以通过逆转录、定量聚合酶链反应和下一代测序进行分析。可以研究所有类型的RNA,并且该方法不限于测量本示例中所示的mRNA。