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Single cell approaches define two mammalian oligodendrocyte precursor cell populations and their evolution over developmental time [Xenium In Situ Gene Expression]

GSE255407 Mus musculus Other 3 samples Submitted 2024/03/05 Platform GPL33896
Summary
Here, we have used single-cell RNA sequencing (scRNA-seq), single-cell ATAC sequencing (scATAC-seq) and spatial transcriptomics to characterize murine cortical OPCs throughout postnatal life. During development, we identify two differentially-localized PDGFRα-positive OPC populations that are transcriptionally and epigenetically distinct. One population (active or actOPCs) is metabolically active and is enriched in white matter. The second (homeostatic or hOPCs) is less active, enriched in grey matter, and predicted to derive from actOPCs. In adulthood, these two groups are transcriptionally but not epigenetically distinct, and relative to developing OPCs are less active metabolically with much less open chromatin. When adult oligodendrogenesis is enhanced following experimental demyelination, adult OPCs do not reacquire a developmental open chromatin state, and the oligodendrogenesis trajectory is distinct from that seen neonatally. These data support a model where two OPC populations subserve distinct postnatal functions, and where neonatal and adult OPC-mediated oligodendrogenesis are fundamentally different.
Published in
Single-cell approaches define two groups of mammalian oligodendrocyte precursor cells and their evolution over developmental time
Dennis DJ, Wang BS, Karamboulas K et al. · Stem cell reports 2024 · PMID 38579710 · doi:10.1016/j.stemcr.2024.03.002
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Also filed as BioProject PRJNA1074815. Searching any of these in the dataset finder brings you back here.

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