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Single-cell DNA methylation and 3D genome architecture in the human brain.


ABSTRACT: Delineating the gene-regulatory programs underlying complex cell types is fundamental for understanding brain function in health and disease. Here, we comprehensively examined human brain cell epigenomes by probing DNA methylation and chromatin conformation at single-cell resolution in 517 thousand cells (399 thousand neurons and 118 thousand non-neurons) from 46 regions of three adult male brains. We identified 188 cell types and characterized their molecular signatures. Integrative analyses revealed concordant changes in DNA methylation, chromatin accessibility, chromatin organization, and gene expression across cell types, cortical areas, and basal ganglia structures. We further developed single-cell methylation barcodes that reliably predict brain cell types using the methylation status of select genomic sites. This multimodal epigenomic brain cell atlas provides new insights into the complexity of cell-type-specific gene regulation in adult human brains.

SUBMITTER: Tian W 

PROVIDER: S-EPMC10572106 | biostudies-literature | 2023 Oct

REPOSITORIES: biostudies-literature

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Single-cell DNA methylation and 3D genome architecture in the human brain.

Tian Wei W   Zhou Jingtian J   Bartlett Anna A   Zeng Qiurui Q   Liu Hanqing H   Castanon Rosa G RG   Kenworthy Mia M   Altshul Jordan J   Valadon Cynthia C   Aldridge Andrew A   Nery Joseph R JR   Chen Huaming H   Xu Jiaying J   Johnson Nicholas D ND   Lucero Jacinta J   Osteen Julia K JK   Emerson Nora N   Rink Jon J   Lee Jasper J   Li Yang E YE   Siletti Kimberly K   Liem Michelle M   Claffey Naomi N   O'Connor Carolyn C   Yanny Anna Marie AM   Nyhus Julie J   Dee Nick N   Casper Tamara T   Shapovalova Nadiya N   Hirschstein Daniel D   Ding Song-Lin SL   Hodge Rebecca R   Levi Boaz P BP   Keene C Dirk CD   Linnarsson Sten S   Lein Ed E   Ren Bing B   Behrens M Margarita MM   Ecker Joseph R JR  

Science (New York, N.Y.) 20231013 6667


Delineating the gene-regulatory programs underlying complex cell types is fundamental for understanding brain function in health and disease. Here, we comprehensively examined human brain cell epigenomes by probing DNA methylation and chromatin conformation at single-cell resolution in 517 thousand cells (399 thousand neurons and 118 thousand non-neurons) from 46 regions of three adult male brains. We identified 188 cell types and characterized their molecular signatures. Integrative analyses re  ...[more]

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