Sun Qiang, Zhou Qin, Qiao Yulong, Chen Xiaona, Sun Hao, Wang Huating
Department of Orthopaedics and Traumatology, Li Ka Shing Institute of Health Sciences, Chinese University of Hong Kong, Hong Kong SAR, China.
Center for Neuromusculoskeletal Restorative Medicine Limited, Hong Kong Science Park, Hong Kong SAR, China.
Nucleic Acids Res. 2025 Jan 7;53(1). doi: 10.1093/nar/gkae1271.
Mammalian genome is hierarchically organized by CTCF and cohesin through loop extrusion mechanism to facilitate the organization of topologically associating domains (TADs). Mounting evidence suggests additional factors/mechanisms exist to orchestrate TAD formation and maintenance. In this study, we investigate the potential role of RNA-binding proteins (RBPs) in TAD organization. By integrated analyses of global RBP binding and 3D genome mapping profiles from both K562 and HepG2 cells, our study unveils the prevalent enrichment of RBPs on TAD boundaries and define boundary-associated RBPs (baRBPs). We found that baRBP binding is correlated with enhanced TAD insulation strength and in a CTCF-independent manner. Moreover, baRBP binding is associated with nascent promoter transcription. Additional experimental testing was performed using RBFox2 as a paradigm. Knockdown of RBFox2 in K562 cells causes mild TAD reorganization. Moreover, RBFox2 enrichment on TAD boundaries is a conserved phenomenon in C2C12 myoblast (MB) cells. RBFox2 is downregulated and its bound boundaries are remodeled during MB differentiation into myotubes. Finally, transcriptional inhibition indeed decreases RBFox2 binding and disrupts TAD boundary insulation. Altogether, our findings demonstrate that RBPs can play an active role in modulating TAD organization through co-transcriptional association and synergistic actions with nascent promoter transcripts.
哺乳动物基因组通过CTCF和黏连蛋白以环挤压机制进行分层组织,以促进拓扑相关结构域(TAD)的组织。越来越多的证据表明,存在其他因素/机制来协调TAD的形成和维持。在本研究中,我们调查了RNA结合蛋白(RBP)在TAD组织中的潜在作用。通过对来自K562和HepG2细胞的全局RBP结合和三维基因组图谱进行综合分析,我们的研究揭示了RBP在TAD边界上的普遍富集,并定义了边界相关RBP(baRBP)。我们发现baRBP结合与增强的TAD绝缘强度相关,且不依赖于CTCF。此外,baRBP结合与新生启动子转录相关。以RBFox2为例进行了额外的实验测试。在K562细胞中敲低RBFox2会导致轻度的TAD重组。此外,RBFox2在TAD边界上的富集在C2C12成肌细胞(MB)中是一种保守现象。在MB分化为肌管的过程中,RBFox2表达下调,其结合的边界发生重塑。最后,转录抑制确实会降低RBFox2的结合并破坏TAD边界绝缘。总之,我们的研究结果表明,RBP可以通过与新生启动子转录本的共转录关联和协同作用,在调节TAD组织中发挥积极作用。