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Integrity of the minor spliceosome in the developing mouse hypothalamus determines neuronal subtype composition regulating energy balance.

White, A. K.; Drake, K. D.; Porczak, A. E.; Tirado-Mansilla, G.; Lee, M. F.; Hyatt, K. C.; Chow, C.; DeQuattro, T.; Mickelsen, L. E.; Sciolino, N. R.; Jackson, A. C.; Kanadia, R. N.

2022-10-07 neuroscience
10.1101/2022.10.04.510883 bioRxiv
Show abstract

While gene regulatory networks underlying hypothalamic development are being characterized, minor intron splicing remains unexplored. Here, we used Nkx2.1-Cre to ablate Rnu11, encoding the minor spliceosome-specific U11 snRNA, in the progenitors of the ventral diencephalon (VD), to study minor intron splicing in hypothalamic development and control of energy balance in mice. Loss of U11 resulted in aberrant minor intron splicing, mitotic stalling, apoptosis, and altered neurogenesis. Mutant mice exhibited gross dysgenesis of hypothalamic architecture, while single-cell RNA sequencing (scRNAseq) revealed aberrant composition of neuronal subtypes implicated in feeding and energy balance. Mutant weanlings failed to thrive, followed by rapid weight gain, resulting in obesity. Assessment of energy imbalance and pair-feeding demonstrated that hyperphagia in adult mutants initiates weight gain, and is compounded by metabolic dysfunction, ultimately resulting in obesity. Our findings suggest a key role of minor intron splicing in the developmental patterning of hypothalamic neuronal subtypes underlying energy balance.

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