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Temporal Differences in Progenitor Metabolism Shape Regional Brain Growth during Development [TrackerSeq]

GSE284016 Mus musculus Expression profiling by high throughput sequencing; Other 4 samples Submitted 2025/04/18 Platform GPL24247
Summary
Mammalian brain development is characterized by disproportionate forebrain expansion, yet the mechanisms underlying this regional growth specificity remain poorly understood. Here, we provide a single-cell-resolution birthdate atlas of the mouse brain (www.neurobirth.org), which reveals that while hindbrain neurogenesis is transient and restricted to early development, forebrain neurogenesis is temporally sustained through reduced consumptive divisions of ventricular zone progenitors, maintaining its germinal pool. This atlas additionally reveals region-specific patterns of direct and indirect neurogenesis. Using single-cell RNA sequencing, we identify evolutionarily conserved cell-cycle programs and metabolism-related molecular pathways that control regional temporal windows of proliferation. We identify the late forebrain-enriched mitochondrial protein Fam210b as a key regulator using in vivo gain- and loss-of-function experiments. Fam210b elongates mitochondria and increases lactate production, which promotes progenitor self-renewing divisions and, ultimately, larger clonal size of their progeny. Together, these findings indicate spatiotemporal heterogeneity in mitochondrial function regulates progenitor cycling behavior and regional neuronal production during brain development.
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Direct links to NCBI, no account and no request form: the whole study as GSE284016_RAW.tar, processed values as the series matrix, the supplementary file directory, and per-sample supplementary files for any of the 4 samples. Raw sequencing reads are also available from ENA.

Also filed as BioProject PRJNA1196839 and SRA study SRP550756. Searching any of these in the dataset finder brings you back here.

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