Division of Hypothalamic Research, Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
J Neurosci. 2013 Feb 13;33(7):2807-20. doi: 10.1523/JNEUROSCI.1610-12.2013.
Reproductive function requires timely secretion of gonadotropin-releasing hormone, which is controlled by a complex excitatory/inhibitory network influenced by sex steroids. Kiss1 neurons are fundamental players in this network, but it is currently unclear whether different conditions of circulating sex steroids directly alter Kiss1 neuronal activity. Here, we show that Kiss1 neurons in the anteroventral periventricular and anterior periventricular nuclei (AVPV/PeN) of males and females exhibit a bimodal resting membrane potential (RMP) influenced by K(ATP) channels, suggesting the presence of two neuronal populations defined as type I (irregular firing patterns) and type II (quiescent). Kiss1 neurons in the arcuate nucleus (Arc) are also composed of firing and quiescent cells, but unlike AVPV/PeN neurons, the range of RMPs did not follow a bimodal distribution. Moreover, Kiss1 neuronal activity in the AVPV/PeN, but not in the Arc, is sexually dimorphic. In females, estradiol shifts the firing pattern of AVPV/PeN Kiss1 neurons and alters cell capacitance and spontaneous IPSCs amplitude of AVPV/PeN and Arc Kiss1 populations in an opposite manner. Notably, mice with selective deletion of estrogen receptor α (ERα) from Kiss1 neurons show cellular activity similar to that observed in ovariectomized females, suggesting that estradiol-induced changes in Kiss1 cellular properties require ERα. We also show that female prepubertal Kiss1 neurons are under higher inhibitory influence and all recorded AVPV/PeN Kiss1 neurons were spontaneously active. Collectively, our findings indicate that changes in cellular activity may underlie Kiss1 action in pubertal initiation and female reproduction.
生殖功能需要及时分泌促性腺激素释放激素,这受由性激素影响的复杂兴奋/抑制网络控制。 Kiss1 神经元是该网络中的基本参与者,但目前尚不清楚循环性激素的不同条件是否直接改变 Kiss1 神经元的活性。在这里,我们表明,雄性和雌性的前腹侧室旁核和前室旁核(AVPV/PeN)中的 Kiss1 神经元表现出受 K(ATP)通道影响的双模态静息膜电位(RMP),表明存在两种神经元群体,定义为 I 型(不规则放电模式)和 II 型(静止)。弓状核(Arc)中的 Kiss1 神经元也由放电和静止细胞组成,但与 AVPV/PeN 神经元不同,RMP 的范围不遵循双峰分布。此外,AVPV/PeN 中的 Kiss1 神经元活性具有性别二态性,但 Arc 中的 Kiss1 神经元活性没有性别二态性。在雌性中,雌激素改变 AVPV/PeN Kiss1 神经元的放电模式,并以相反的方式改变 AVPV/PeN 和 Arc Kiss1 群体的细胞电容和自发 IPSC 幅度。值得注意的是,从 Kiss1 神经元中选择性缺失雌激素受体 α(ERα)的小鼠显示出类似于去卵巢雌性观察到的细胞活性,表明雌激素诱导的 Kiss1 细胞特性变化需要 ERα。我们还表明,青春期前雌性的 Kiss1 神经元受到更高的抑制影响,并且所有记录的 AVPV/PeN Kiss1 神经元都是自发活动的。总之,我们的研究结果表明,细胞活性的变化可能是 Kiss1 在青春期启动和女性生殖中的作用的基础。