| Literature DB >> 34591592 |
Yodai Takei1, Shiwei Zheng2, Jina Yun1, Sheel Shah1, Nico Pierson1, Jonathan White1, Simone Schindler1, Carsten H Tischbirek1, Guo-Cheng Yuan2, Long Cai1.
Abstract
Diverse cell types in tissues have distinct gene expression programs, chromatin states, and nuclear architectures. To correlate such multimodal information across thousands of single cells in mouse brain tissue sections, we use integrated spatial genomics, imaging thousands of genomic loci along with RNAs and epigenetic markers simultaneously in individual cells. We reveal that cell type–specific association and scaffolding of DNA loci around nuclear bodies organize the nuclear architecture and correlate with differential expression levels in different cell types. At the submegabase level, active and inactive X chromosomes access similar domain structures in single cells despite distinct epigenetic and expression states. This work represents a major step forward in linking single-cell three-dimensional nuclear architecture, gene expression, and epigenetic modifications in a native tissue context.Entities:
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Year: 2021 PMID: 34591592 DOI: 10.1126/science.abj1966
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 63.714