An epigenome atlas of neural progenitors within the embryonic mouse forebrain

A comprehensive characterization of epigenomic organization in the embryonic mouse forebrain will enhance our understanding of neurodevelopment and provide insight into mechanisms of neurological disease. Here we collected single-cell chromatin accessibility profiles from four distinct neurogenic re...

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Veröffentlicht in:Nature communications 2022-07, Vol.13 (1), p.4196-4196, Article 4196
Hauptverfasser: Rhodes, Christopher T., Thompson, Joyce J., Mitra, Apratim, Asokumar, Dhanya, Lee, Dongjin R., Lee, Daniel J., Zhang, Yajun, Jason, Eva, Dale, Ryan K., Rocha, Pedro P., Petros, Timothy J.
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Sprache:eng
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Zusammenfassung:A comprehensive characterization of epigenomic organization in the embryonic mouse forebrain will enhance our understanding of neurodevelopment and provide insight into mechanisms of neurological disease. Here we collected single-cell chromatin accessibility profiles from four distinct neurogenic regions of the embryonic mouse forebrain using single nuclei ATAC-Seq (snATAC-Seq). We identified thousands of differentially accessible peaks, many restricted to distinct progenitor cell types or brain regions. We integrated snATAC-Seq and single cell transcriptome data to characterize changes of chromatin accessibility at enhancers and promoters with associated transcript abundance. Multi-modal integration of histone modifications (CUT&Tag and CUT&RUN), promoter-enhancer interactions (Capture-C) and high-order chromatin structure (Hi-C) extended these initial observations. This dataset reveals a diverse chromatin landscape with region-specific regulatory mechanisms and genomic interactions in distinct neurogenic regions of the embryonic mouse brain and represents an extensive public resource of a ‘ground truth’ epigenomic landscape at this critical stage of neurogenesis. The authors took a multimodal approach to characterize the differential transcriptome and epigenetic landscape between distinct regions of the embryonic mouse forebrain, revealing many unexplored presumptive promoter-enhancer interactions.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-022-31793-4