Ding Cheng, Chen Guoting, Luan Shiping, Gong Yuanyuan, Gui Cuilin, Yang Chen, Xiang Zihe, Du Junjie, Foda Mohamed F, Yan Jiapei, Li Xingwang
National Key Laboratory of Crop Genetic Improvement, Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, China.
Department of Biochemistry, Faculty of Agriculture, Benha University, Moshtohor, Toukh 13736, Egypt.
Bio Protoc. 2025 Sep 5;15(17):e5430. doi: 10.21769/BioProtoc.5430.
Chromatin-associated RNAs (caRNAs) have been increasingly recognized as key regulators of gene expression and genome architecture. A few technologies, such as ChRD-PET and RedChIP, have emerged to assess protein-mediated RNA-chromatin interactions, but each has limitations. Here, we describe the TaDRIM-seq (targeted DNA-associated RNA and RNA-RNA interaction mapping by sequencing) technique, which combines Protein G (PG)-Tn5-targeted DNA tagmentation with in situ proximity ligation to simultaneously profile caRNAs across genomic regions and capture global RNA-RNA interactions within intact nuclei. This approach reduces the required cell input, shortens the experimental duration compared to existing protocols, and is applicable to both mammalian and plant systems. Key features • A multi-omics sequencing strategy. • Compatible with mammalian and plant systems. • Profiling of epigenome, RNA-DNA, and RNA-RNA interactomes.
染色质相关RNA(caRNAs)已日益被视为基因表达和基因组结构的关键调节因子。一些技术,如ChRD-PET和RedChIP,已出现用于评估蛋白质介导的RNA-染色质相互作用,但每种技术都有局限性。在此,我们描述了TaDRIM-seq(通过测序进行靶向DNA相关RNA和RNA-RNA相互作用图谱分析)技术,该技术将蛋白G(PG)-Tn5靶向DNA转座与原位邻近连接相结合,以同时分析跨基因组区域的caRNAs,并捕获完整细胞核内的全局RNA-RNA相互作用。这种方法减少了所需的细胞输入量,与现有方案相比缩短了实验持续时间,并且适用于哺乳动物和植物系统。关键特性 • 一种多组学测序策略。 • 与哺乳动物和植物系统兼容。 • 表观基因组、RNA-DNA和RNA-RNA相互作用组分析。