Neurexin-3 in the paraventricular nucleus of the hypothalamus regulates body weight and glucose homeostasis independently of food intake

Author:

Mu MingdaoORCID,Sun Haoyu,Geng Shuyan,Xu Tianxiang,Sun Chuanyao,Zhang Zixu,Meng Sibie,Li Moyi,Liu An,Yang Zhiyuan,Xie Wei

Abstract

AbstractNeurexin-3 (Nrxn3) has been genetically associated with obesity, but the underlying neural mechanisms remain poorly understood. This study aimed to investigate the role of Nrxn3 in the paraventricular nucleus of the hypothalamus (PVN) in regulating energy balance and glucose homeostasis. We found that Nrxn3 expression in the PVN was upregulated in response to metabolic stressors, including cold exposure and fasting. Using Cre-loxP technology, we selectively ablated Nrxn3 in CaMKIIα-expressing neurons of the PVN in male mice. This genetic manipulation resulted in marked weight gain attributable to increased adiposity and impaired glucose tolerance, without affecting food intake. Our findings identify PVN CaMKIIα-expressing neurons as a critical locus where Nrxn3 modulates energy balance by regulating adipogenesis and glucose metabolism, independently of appetite. These results reveal a novel neural mechanism potentially linking Nrxn3 dysfunction to obesity pathogenesis, suggesting that targeting PVN Nrxn3-dependent neural pathways may inform new therapeutic approaches for obesity prevention and treatment.

Funder

Fundamental Research Funds for the Central Universities

Natural Science Foundation of China

Basic Research Program of Jiangsu Province

Medical Specialty Ascent Program of Southeast University

Publisher

Springer Science and Business Media LLC

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