Yi Xianfu, Zheng Zhanye, Xu Hang, Zhou Yao, Huang Dandan, Wang Jianhua, Feng Xiangling, Zhao Ke, Fan Xutong, Zhang Shijie, Dong Xiaobao, Wang Zhao, Shen Yujun, Cheng Hui, Shi Lei, Li Mulin Jun
School of Biomedical Engineering and Technology, Tianjin Medical University, Tianjin 300070, China.
Department of Bioinformatics, The Province and Ministry Co-sponsored Collaborative Innovation Center for Medical Epigenetics, Tianjin Medical University, Tianjin 300070, China.
iScience. 2021 Nov 18;24(12):103468. doi: 10.1016/j.isci.2021.103468. eCollection 2021 Dec 17.
Context-specific activities of transcription regulators (TRs) in the nucleus modulate spatiotemporal gene expression precisely. Using the largest ChIP-seq data and chromatin loops in the human K562 cell line, we initially interrogated TR cooperation in 3D chromatin via a graphical model and revealed many known and novel TRs manipulating context-specific pathways. To explore TR cooperation across broad tissue/cell types, we systematically leveraged large-scale open chromatin profiles, computational footprinting, and high-resolution chromatin interactions to investigate tissue/cell type-specific TR cooperation. We first delineated a landscape of TR cooperation across 40 human tissue/cell types. Network modularity analyses uncovered the commonality and specificity of TR cooperation in different conditions. We also demonstrated that TR cooperation information can better interpret the disease-causal variants identified by genome-wide association studies and recapitulate cell states during neural development. Our study characterizes shared and unique patterns of TR cooperation associated with the cell type specificity of gene regulation in 3D chromatin.
转录调节因子(TRs)在细胞核中的特定上下文活动精确地调节时空基因表达。利用人类K562细胞系中最大的ChIP-seq数据和染色质环,我们最初通过图形模型研究了三维染色质中的TR合作,并揭示了许多已知和新的TRs操纵特定上下文途径。为了探索广泛组织/细胞类型中的TR合作,我们系统地利用大规模开放染色质图谱、计算足迹和高分辨率染色质相互作用来研究组织/细胞类型特异性TR合作。我们首先描绘了40种人类组织/细胞类型中TR合作的全景。网络模块化分析揭示了不同条件下TR合作的共性和特异性。我们还证明,TR合作信息可以更好地解释全基因组关联研究确定的疾病因果变异,并概括神经发育过程中的细胞状态。我们的研究表征了与三维染色质中基因调控的细胞类型特异性相关的TR合作的共享和独特模式。