bioRxiv · 10.1101/2025.05.16.654570
Enkephalinergic Neurons Gate Sex-Specific Control of Voluntary Micturition
Abstract
Barringtons nucleus (Bar) is a brainstem hub essential for lower urinary tract (LUT) function, yet the molecular identity and functional specialization of its neuronal subtypes remain poorly defined. Here, we construct a single-nucleus transcriptional atlas of Bar and identify an excitatory Penk- expressing population (Bar-Penk) critical for LUT regulation. Bar-Penk neurons are selectively active during voiding, when the external urethral sphincter (EUS) relaxes, and their optogenetic activation elicits time-locked suppression of EUS activity. Chemogenetic activation of these neurons induces a sex-specific, aberrant pattern of micturition, whereas targeted ablation impairs voluntary marking behavior in response to female cues. We observe multiple regions involved in visceromotor regulation and behavioral state control that project to Bar-Penk neurons, supporting their role as integrators of internal state and environmental context that drive urinary output. These findings provide new insights into the brainstem circuits that shape reflexive and voluntary micturition and highlight how discrete neuronal subtypes contribute to sexually dimorphic regulation of LUT function.
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Klymko, N., Sartori, A. M., Leon, M., Seifert, C. N., Lee, R., Mathai, J. C., Verstegen, A. M. J.. 2025-05-21. Enkephalinergic Neurons Gate Sex-Specific Control of Voluntary Micturition. https://doi.org/10.1101/2025.05.16.654570
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