Torres Manon, Becquet Denis, Guillen Séverine, Boyer Bénédicte, Moreno Mathias, Blanchard Marie-Pierre, Franc Jean-Louis, François-Bellan Anne-Marie
CNRS, CRN2M-UMR7286, Faculté de Médecine Nord, Aix-Marseille Université.
Plate-forme d'imagerie MRI, UMS3426, CNRS 141, Institut de Génétique Humaine.
J Vis Exp. 2018 Apr 10(134):57379. doi: 10.3791/57379.
Long non-coding RNA (lncRNA), which are sequences of more than 200 nucleotides without a defined reading frame, belong to the regulatory non-coding RNA's family. Although their biological functions remain largely unknown, the number of these lncRNAs has steadily increased and it is now estimated that humans may have more than 10,000 such transcripts. Some of these are known to be involved in important regulatory pathways of gene expression which take place at the transcriptional level, but also at different steps of RNA co- and post-transcriptional maturation. In the latter cases, RNAs that are targeted by the lncRNA have to be identified. That's the reason why it is useful to develop a method enabling the identification of RNAs associated directly or indirectly with a lncRNA of interest. This protocol, which was inspired by previously published protocols allowing the isolation of a lncRNA together with its associated chromatin sequences, was adapted to permit the isolation of associated RNAs. We determined that two steps are critical for the efficiency of this protocol. The first is the design of specific anti-sense DNA oligonucleotide probes able to hybridize to the lncRNA of interest. To this end, the lncRNA secondary structure was predicted by bioinformatics and anti-sense oligonucleotide probes were designed with a strong affinity for regions that display a low probability of internal base pairing. The second crucial step of the procedure relies on the fixative conditions of the tissue or cultured cells that have to preserve the network between all molecular partners. Coupled with high throughput RNA sequencing, this RNA pull-down protocol can provide the whole RNA interactome of a lncRNA of interest.
长链非编码RNA(lncRNA)是指长度超过200个核苷酸且无明确可读框的序列,属于调控性非编码RNA家族。尽管其生物学功能在很大程度上仍不清楚,但这类lncRNA的数量一直在稳步增加,目前估计人类可能有超过10000种这样的转录本。其中一些已知参与基因表达的重要调控途径,这些途径不仅发生在转录水平,也发生在RNA共转录和转录后成熟的不同阶段。在后一种情况下,必须确定被lncRNA靶向的RNA。这就是为什么开发一种能够鉴定与感兴趣的lncRNA直接或间接相关的RNA的方法很有用的原因。本方案受先前发表的允许分离lncRNA及其相关染色质序列的方案启发,经过调整以允许分离相关RNA。我们确定有两个步骤对本方案的效率至关重要。第一步是设计能够与感兴趣的lncRNA杂交的特异性反义DNA寡核苷酸探针。为此,通过生物信息学预测lncRNA的二级结构,并设计对内部碱基配对概率低的区域具有强亲和力的反义寡核苷酸探针。该程序的第二个关键步骤依赖于组织或培养细胞的固定条件,这些条件必须保持所有分子伴侣之间的网络。与高通量RNA测序相结合,这种RNA下拉方案可以提供感兴趣的lncRNA的整个RNA相互作用组。