Projection-defined hypothalamic outputs differentially regulate thermogenesis and lipolysis.

Min, Hyeonyoung; Zheng, Qi; Yang, Yunlei · Proc Natl Acad Sci U S A · 2026

basic_science · Level V

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Abstract

The ventromedial hypothalamus (VMH) is a key regulator of energy homeostasis, linking central neural activity to peripheral metabolic function. Within the VMH, neurons expressing steroidogenic factor-1 (SF-1; VMH<sup>SF1</sup>) are essential for regulating energy expenditure, yet the projection-defined pathways through which they differentially control distinct adipose depots remains unclear. Here, we use projection-specific optogenetic and chemogenetic manipulations in SF1-Cre mice to identify two anatomically and functionally distinct VMH<sup>SF1</sup> output pathways with complementary metabolic roles. Activation of the VMH<sup>SF1</sup>→rostral periaqueductal gray (rPAG) projection selectively stimulates thermogenesis in brown adipose tissue, elevating its temperature and thermogenic gene expression, whereas activation of the VMH<sup>SF1</sup>→paraventricular thalamus (PVT) pathway promotes lipolysis in white adipose tissue without engaging thermogenic programs. Both effects require intact innervation and target-region activity. These findings reveal that VMH<sup>SF1</sup> neurons direct distinct hypothalamic output pathways to differentially regulate thermogenesis and lipid mobilization, delineating a modular neural framework for flexible, state-dependent coordination of energy expenditure and substrate utilization.

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