A multi-omics atlas of human hindbrain development
Joshi, P.; Sepp, M.; Sarropoulos, I.; Trost, N.; Okonechnikov, K.; Yamada, T.; Schneider, C.; Schmidt, J.; Perera, A. A.; Wittmann, A.; Blattner-Johnson, M.; Jones, B.; van Tilburg, C. M.; Witt, O.; Lisgo, S.; Palkovits, M.; Jones, D. T. W.; Thongjuea, S.; Kaessmann, H.; Pfister, S. M.; Kutscher, L. M.
Show abstract
The human hindbrain controls essential motor and autonomic functions and is the site of neurodevelopmental diseases. Yet, its cellular diversity, developmental trajectories and underlying regulatory logic remain poorly understood. We present a comprehensive multi-omics atlas of human hindbrain development spanning embryonic to adult stages, encompassing 594,817 transcriptomic and 422,568 chromatin-accessibility single-nucleus profiles. This dataset resolved the cellular architecture of hindbrain cellular lineages, and delineated coordinated gene expression, cis-regulatory programs and regulatory grammar guiding their developmental trajectories. By integrating multi-omics data, we discovered context-specific roles of transcription factors across cell types and deciphered the role of HOX genes in driving divergent cellular identity in related lineages. We further leveraged the atlas to contextualize pediatric gliomas to decode how subtle yet coordinated shifts in gene expression context can define oncogenic transformation. Together, this atlas provides a foundational resource for hindbrain biology and establishes a gene-regulatory framework linking development and disease.
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