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Domingos, A.

Publications and source records attributed to Domingos, A..

2 recordsLinked to original sources

β2AR Agonists Sustain Thermogenesis and Leanness via Sympathofacilitation

Human thermogenesis depends on {beta}2-adrenoceptors ({beta}2AR) expressed in thermogenic adipocytes, which are activated by norepinephrine released from sympathetic neurons. Whether {beta}2AR also modulates thermogenesis via direct presynaptic action within sympathetic neurons has remained unclear. Here, we identify Adrb2 expression in human and rodent cervical sympathetic neurons. {beta}2AR agonism exerts neurotrophic effects and facilitates cholinergic responsiveness in mouse sympathetic neurons, indicating a sympathofacilitatory role. Selective deletion of {beta}2AR in sympathetic neurons leads to impaired nerve activity in brown adipose tissue, sympathetic neuropathy, worsened fasting-induced hypothermia, and progressive obesity in chow-fed mice--without changes in food intake. These findings uncover a presynaptic role for {beta}2AR in sustaining thermogenesis and regulating adiposity, suggesting sympathofacilitation as a therapeutic avenue for obesity. HighlightsO_LIHuman and mouse cervical sympathetic neurons express adrenoceptor beta 2 (Adrb2) C_LIO_LI{beta}2-adrenoceptor ({beta}2AR) activation is neurotrophic and facilitates sympathetic neuronal excitability C_LIO_LILoss of {beta}2AR in sympathetic neurons leads to neuropathy in brown adipose tissue and reduced sympathetic activity C_LIO_LIDeletion of {beta}2AR in sympathetic neurons exacerbates fasting-induced hypothermia and promotes obesity independently of food intake C_LI

physiology↗

The perineurium integrates leptin with its sympathetic outflow to protect against obesity

The regulatory mechanism of leptins afferent action in the brain, constituting a negative feedback loop, is contingent upon the efferent sympathetic innervation of white and brown adipose tissues. Nonetheless, the peripheral regulation governing the relative strengths of the afferent and efferent arms remains ambiguous. Using single-cell RNA sequencing on murine sympathetic ganglia, we identified the unique expression of both the leptin receptor (LepR) and the beta 2 adrenergic receptor (Adrb2) in perineurial cells that form a barrier around sympathetic ganglia and nerve bundles in adipose tissues. We show that LepR+ Sympathetic Perineurial Cells (SPCs) are molecularly similar to endothelial cells and that conditional knockout of Adrb2 in LepR+ SPCs predisposes mice to obesity without affecting food intake. Notably, we found that hyperleptinemia associated with obesity causes apoptosis in SPCs, leading to a significant erosion of the perineurial barrier and concomitant adipose sympathetic neuropathy. We further show that this deleterious effect can be reversed by sympathomimetic beta 2 adrenergic receptor agonism. These results have relevance to human obesity, as we observed a synergistic effect of highly common polymorphisms of LEPR and ADRB2 on the risk of increased BMI in a large European population. We propose that SPCs are the nexus of leptin action by integrating the afferent and efferent arms of the neuroendocrine loop to influence its setpoint.

neuroscience↗