Fabelo Carolina, Hernandez Jennifer, Chang Rachel, Seng Sakara, Alicea Natalia, Tian Sharon, Conde Kristie, Wagner Edward J
Department of Basic Medical Sciences, College of Osteopathic Medicine, Western University of Health Sciences, Pomona, CA, United States.
Graduate College of Biomedical Sciences, Western University of Health Sciences, Pomona, CA, United States.
Front Mol Neurosci. 2018 Jun 19;11:214. doi: 10.3389/fnmol.2018.00214. eCollection 2018.
We tested the hypotheses that steroidogenic factor (SF)-1 neurons in the hypothalamic ventromedial nucleus (VMN) provide sexually disparate, endocannabinoid (EC)- and diet-sensitive glutamatergic input onto proopiomelanocortin (POMC) neurons. Electrophysiological recordings were performed in hypothalamic slices from intact and castrated guinea pigs, along with optogenetic experiments in intact male as well as cycling and ovariectomized female NR5A1-Cre mice. In slices from castrated male and female guinea pigs, depolarized-induced suppression of excitation (DSE) time-dependently reduced the amplitude of evoked excitatory postsynaptic currents (eEPSCs) in POMC neurons generated by electrically stimulating the dorsomedial VMN. Androgen stimulation rapidly enhanced this DSE, which was also found in insulin-resistant, high-fat diet (HFD)-fed males. By contrast, retrograde signaling at VMN/ARC POMC synapses was markedly attenuated in periovulatory females. HFD potentiated central cannabinoid-induced hyperphagia in both males and females, but exerted differential influences on cannabinoid-induced increases in energy expenditure. In NR5A1-Cre mice, the reduction in light-evoked EPSC amplitude caused by postsynaptic depolarization in cycling females was modest in comparison to that seen in intact males. Estradiol attenuated the DSE in light-evoked EPSC amplitude in slices from ovariectomized females. Moreover, the retrograde inhibition of transmission was further accentuated in HFD-fed males. Chemogenetic activation of SF-1 neurons suppressed appetite and increased energy expenditure in males, effects which were attenuated by HFD. Conversely, energy expenditure was increased in estradiol- but not vehicle-treated ovariectomized females. Together with our previous studies indicating that DSE in POMC neurons is EC-mediated, these findings indicate that VMN SF-1/ARC POMC synapses represent a sexually differentiated, EC- and diet-sensitive anorexigenic component within the hypothalamic energy balance circuitry.
下丘脑腹内侧核(VMN)中的类固醇生成因子(SF)-1神经元向阿片促黑素皮质素原(POMC)神经元提供性别差异、对内源性大麻素(EC)和饮食敏感的谷氨酸能输入。对完整和阉割的豚鼠的下丘脑切片进行了电生理记录,并对完整雄性以及处于发情周期和卵巢切除的雌性NR5A1-Cre小鼠进行了光遗传学实验。在阉割的雄性和雌性豚鼠的切片中,去极化诱导的兴奋抑制(DSE)随时间依赖性地降低了通过电刺激背内侧VMN在POMC神经元中诱发的兴奋性突触后电流(eEPSCs)的幅度。雄激素刺激迅速增强了这种DSE,在胰岛素抵抗的高脂饮食(HFD)喂养的雄性中也发现了这种情况。相比之下,在排卵前期雌性中,VMN/弓状核POMC突触处的逆行信号明显减弱。HFD增强了雄性和雌性中枢大麻素诱导的摄食,但对大麻素诱导的能量消耗增加产生了不同的影响。在NR5A1-Cre小鼠中,与完整雄性相比,发情周期雌性中突触后去极化引起的光诱发EPSC幅度的降低较小。雌二醇减弱了卵巢切除雌性切片中光诱发EPSC幅度的DSE。此外,在HFD喂养的雄性中,传递的逆行抑制进一步增强。SF-1神经元的化学遗传激活抑制了雄性的食欲并增加了能量消耗,HFD减弱了这些作用。相反,在雌二醇而非载体处理的卵巢切除雌性中,能量消耗增加。连同我们之前的研究表明POMC神经元中的DSE是由EC介导的,这些发现表明VMN SF-1/弓状核POMC突触代表了下丘脑能量平衡回路中一个性别分化、对EC和饮食敏感的厌食成分。