用染色质-RNA 原位反转录测序(CRIST-seq)方法剖析非编码 RNA 相互作用网络。

Shilin Zhang, Xue Wen, Lei Zhou, Hui Li, Wei Li, Andrew R Hoffman, Ji-Fan Hu, Jiuwei Cui
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摘要

非编码 RNA(ncRNA)是指不编码蛋白质的 RNA,但许多 ncRNA 确实具有调控基因表达的能力。这些 ncRNA 通过不同的生化机制在各种生理和病理过程的表观遗传调控中发挥着关键作用。然而,现有的识别调控ncRNA的筛选方法只关注全细胞表达水平,并不能捕捉到每一个靶向某些基因的ncRNA。我们介绍了一种新方法--染色质-RNA原位反转录测序(CRIST-seq),它能识别与任何给定基因的调控相关的所有 ncRNA。在这篇文章中,我们以与多能基因 Sox2 相关的 ncRNA 为靶标,从而为维持多能性的 ncRNA 调控网络编目。通过对CRISPR-dCas9 gRNA进行简单的改动,该方法可普遍适用于任何基因的表观遗传调控研究。主要特点 该方法为筛选 ncRNA 和建立染色质相互作用网络提供了一种新技术。该方法的目标基因可以是任何感兴趣的基因和整个基因组中的任何位点。该方法还可进一步扩展到检测与目标基因相互作用的 RNA、DNA 和蛋白质。图形概览。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chromatin-RNA in situ Reverse Transcription Sequencing (CRIST-seq) Approach to Profile the Non-coding RNA Interaction Network.

Chromatin-RNA in situ Reverse Transcription Sequencing (CRIST-seq) Approach to Profile the Non-coding RNA Interaction Network.

Chromatin-RNA in situ Reverse Transcription Sequencing (CRIST-seq) Approach to Profile the Non-coding RNA Interaction Network.

Chromatin-RNA in situ Reverse Transcription Sequencing (CRIST-seq) Approach to Profile the Non-coding RNA Interaction Network.

Non-coding RNAs (ncRNAs) are defined as RNAs that do not encode proteins, but many ncRNAs do have the ability to regulate gene expression. These ncRNAs play a critical role in the epigenetic regulation of various physiological and pathological processes through diverse biochemical mechanisms. However, the existing screening methods to identify regulatory ncRNAs only focus on whole-cell expression levels and do not capture every ncRNA that targets certain genes. We describe a new method, chromatin-RNA in situ reverse transcription sequencing (CRIST-seq), that can identify all the ncRNAs that are associated with the regulation of any given gene. In this article, we targeted the ncRNAs that are associated with pluripotent gene Sox2, allowing us to catalog the ncRNA regulation network of pluripotency maintenance. This methodology is universally applicable for the study of epigenetic regulation of any genes by making simple changes on the CRISPR-dCas9 gRNAs. Key features This method provides a new technique for screening ncRNAs and establishing chromatin interaction networks. The target gene for this method can be any gene of interest and any site in the entire genome. This method can be further extended to detect RNAs, DNAs, and proteins that interact with target genes. Graphical overview.

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