Study / S0NJXTVDO2023-11-23

Joint epigenome profiling reveals cell-type-specific gene regulatory programmes in human cortical organoids

Florian Noack, Silvia Vangelisti, Nora Ditzer, Faye Chong, Mareike Albert et al.

About this study

Gene expression is regulated by multiple epigenetic mechanisms, which are coordinated in development and disease. However, current multiomics methods are frequently limited to one or two modalities at a time, making it challenging to obtain a comprehensive gene regulatory signature. Here, we describe a method—3D genome, RNA, accessibility and methylation sequencing (3DRAM-seq)—that simultaneously interrogates spatial genome organization, chromatin accessibility and DNA methylation genome-wide and at high resolution. We combine 3DRAM-seq with immunoFACS and RNA sequencing in cortical organoids to map the cell-type-specific regulatory landscape of human neural development across multiple epigenetic layers. Finally, we apply a massively parallel reporter assay to profile cell-type-specific enhancer activity in organoids and to functionally assess the role of key transcription factors for human enhancer activation and function. More broadly, 3DRAM-seq can be used to profile the multimodal epigenetic landscape in rare cell types and different tissues.

Full author list & citation

Florian Noack, Silvia Vangelisti, Nora Ditzer, Faye Chong, Mareike Albert, Boyan Bonev. Joint epigenome profiling reveals cell-type-specific gene regulatory programmes in human cortical organoids. 2023-11-23. https://doi.org/10.1038/s41556-023-01296-5

Experiments 3

E0K4TN5K5

Cell-type-specific episomal MPRA in human cortical organoid PAX6-negative/EOMES-negative (N) cells

A common 5,876-sequence episomal MPRA library was electroporated into day-45 human cortical organoids, cultured for 72 hours, and assayed after immunoFACS isolation of the PAX6-negative/EOMES-negative N population in two biological replicates. The table combines the published per-construct N activity statistics with normalized DNA/RNA barcode summaries calculated from the GEO processed count matrix.

Episomal Plasmid MPRAHumanGRCh38
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E1XOGRYJN

Cell-type-specific episomal MPRA in human cortical organoid radial glial cells (RGCs)

A common 5,876-sequence episomal MPRA library was electroporated into day-45 human cortical organoids, cultured for 72 hours, and assayed after immunoFACS isolation of radial glial cells (RGCs) in two biological replicates. The table combines the published per-construct RGC activity statistics with normalized DNA/RNA barcode summaries calculated from the GEO processed count matrix.

Episomal Plasmid MPRAHumanGRCh38
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E91FV6NFI

Cell-type-specific episomal MPRA in human cortical organoid intermediate progenitor cells (IPCs)

A common 5,876-sequence episomal MPRA library was electroporated into day-45 human cortical organoids, cultured for 72 hours, and assayed after immunoFACS isolation of intermediate progenitor cells (IPCs) in two biological replicates. The table combines the published per-construct IPC activity statistics with normalized DNA/RNA barcode summaries calculated from the GEO processed count matrix.

Episomal Plasmid MPRAHumanGRCh38
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Raw source data 6 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 6 files (ZIP)41556_2023_1296_MOESM3_ESM.xlsx41556_2023_1296_MOESM4_ESM.xlsxGSE211736_family.soft.gzGSE211736_MPRA_neg_rep1_rep2.tar.gzGSE211736_MPRA_PAX6_rep1_rep2.tar.gzGSE211736_MPRA_TBR2_rep1_rep2.tar.gz

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