Mapping enhancer and chromatin accessibility landscapes charts the regulatory network of Alzheimer's disease

作者:Xu, Dahua; Zhang, Chunrui; Bi, Xiaoman; Xu, Jiankai; Guo, Shengnan; Li, Peihu; Shen, Yutong; Cai, Jiale; Zhang, Nihui; Tian, Guanghui; Zhang, Haifei; Wang, Hong; Li, Qifu; Jiang, Hongyan; Wang, Bo*; Li, Xia*; Li, Yongsheng*; Li, Kongning*
来源:Computers in Biology and Medicine, 2024, 168: 107802.
DOI:10.1016/j.compbiomed.2023.107802

摘要

Background: Enhancers are regulatory elements that target and modulate gene expression and play a role in human health and disease. However, the roles of enhancer regulatory circuit abnormalities driven by epigenetic alterations in Alzheimer's disease (AD) are unclear. Methods: In this study, a multiomic integrative analysis was performed to map enhancer and chromatin accessibility landscapes and identify regulatory network abnormalities in AD. We identified differentially methylated enhancers and constructed regulatory networks across brain regions using AD brain tissue samples. Through the integration of snATAC-seq and snRNA-seq datasets, we mapped enhancers with DNA methylation alterations (DMA) and chromatin accessibility landscapes. Core regulatory triplets that contributed to AD neuropathology in specific cell types were further prioritized. Results: We revealed widespread DNA methylation alterations (DMA) in the enhancers of AD patients across different brain regions. In addition, the genome-wide transcription factor (TF) binding profiles showed that enhancers with DMA are pervasively regulated by TFs. The TF-enhancer-gene regulatory network analysis identified core regulatory triplets that are associated with brain and immune cell proportions and play important roles in AD pathogenesis. Enhancer regulatory circuits with DMA exhibited distinct chromatin accessibility patterns, which were further characterized at single-cell resolutions. Conclusions: Our study comprehensively investigated DNA methylation-mediated regulatory circuit abnormal-ities and provided novel insights into the potential pathogenesis of AD.

  • 单位
    海南医学院; 哈尔滨医科大学

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