Cheng Helia, Pablico Schuyler J, Lee Jisu, Chang Ji Suk, Yu Sangho
'Department of Neurobiology of Nutrition and Metabolism, Louisiana State University System, Baton Rouge, LA, United States.
Department of Gene Regulation and Metabolism, Pennington Biomedical Research Center, Louisiana State University System, Baton Rouge, LA, United States.
Front Neurosci. 2020 Dec 1;14:592947. doi: 10.3389/fnins.2020.592947. eCollection 2020.
The central nervous system controls feeding behavior and energy expenditure in response to various internal and external stimuli to maintain energy balance. Here we report that the newly identified transcription factor zinc finger and BTB domain containing 16 (Zbtb16) is induced by energy deficit in the paraventricular (PVH) and arcuate (ARC) nuclei of the hypothalamus via glucocorticoid (GC) signaling. In the PVH, is expressed in the anterior half of the PVH and co-expressed with many neuronal markers such as corticotropin-releasing hormone (Crh), thyrotropin-releasing hormone (Trh), oxytocin (Oxt), arginine vasopressin (Avp), and nitric oxide synthase 1 (Nos1). Knockdown (KD) of in the PVH results in attenuated cold-induced thermogenesis and improved glucose tolerance without affecting food intake. In the meantime, is predominantly expressed in agouti-related neuropeptide/neuropeptide Y (Agrp/Npy) neurons in the ARC and its KD in the ARC leads to reduced food intake. We further reveal that chemogenetic stimulation of PVH Zbtb16 neurons increases energy expenditure while that of ARC Zbtb16 neurons increases food intake. Taken together, we conclude that is an important mediator that coordinates responses to energy deficit downstream of GCs by contributing to glycemic control through the PVH and feeding behavior regulation through the ARC, and additionally reveal its function in controlling energy expenditure during cold-evoked thermogenesis via the PVH. As a result, we hypothesize that Zbtb16 may be involved in promoting weight regain after weight loss.
中枢神经系统会根据各种内部和外部刺激来控制进食行为和能量消耗,以维持能量平衡。在此,我们报告新发现的转录因子锌指和BTB结构域包含16(Zbtb16)在下丘脑室旁核(PVH)和弓状核(ARC)中通过糖皮质激素(GC)信号通路被能量缺乏所诱导。在PVH中,Zbtb16在PVH的前半部分表达,并与许多神经元标志物共同表达,如促肾上腺皮质激素释放激素(Crh)、促甲状腺激素释放激素(Trh)、催产素(Oxt)、精氨酸加压素(Avp)和一氧化氮合酶1(Nos1)。在PVH中敲低Zbtb16会导致冷诱导产热减弱和葡萄糖耐量改善,而不影响食物摄入量。与此同时,Zbtb16主要在ARC中的刺鼠相关肽/神经肽Y(Agrp/Npy)神经元中表达,在ARC中敲低它会导致食物摄入量减少。我们进一步揭示,对PVH的Zbtb16神经元进行化学遗传刺激会增加能量消耗,而对ARC的Zbtb16神经元进行化学遗传刺激会增加食物摄入量。综上所述,我们得出结论,Zbtb16是一个重要的介质,它通过PVH促进血糖控制和通过ARC调节进食行为,从而在GC下游协调对能量缺乏的反应,此外还揭示了其在通过PVH控制冷诱发产热期间的能量消耗中的作用。因此,我们假设Zbtb16可能参与促进体重减轻后的体重恢复。