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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >GABAergic Transmission to Kisspeptin Neurons Is Differentially Regulated by Time of Day and Estradiol in Female Mice
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GABAergic Transmission to Kisspeptin Neurons Is Differentially Regulated by Time of Day and Estradiol in Female Mice

机译:GABA能传递给Kisspeptin神经元的时间和雌性小鼠的雌二醇有差异。

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Gonadotropin-releasing hormone (GnRH) secretion is regulated by estradiol feedback. This feedback switches from negative to positive in females; this switch depends on time of day in many species. Estradiol feedback is likely conveyed via afferents. Kisspeptin neurons of the arcuate nucleus and anteroventral-periventricular region (AVPV) may differentially regulate GnRH neurons during negative and positive feedback, respectively. We tested estradiol and time of day regulation of GABAergic transmission and postsynaptic response to GABA in these two populations using transgenic mice with GFP-identified kisspeptin neurons. Ovariectomized (OVX) mice treated or not with estradiol (E) were studied in the AM (negative feedback) or PM (positive feedback). GABAA receptor reversal potential was unaffected by time of day or estradiol. GABA depolarized the membrane potential of arcuate neurons from OVX + E mice; this response was blunted in cells from OVX mice. GABA hyperpolarized AVPV kisspeptin neurons, except in the OVX PM group in which GABA did not alter membrane potential attributable to a PM hyperpolarization of baseline membrane potential. In both kisspeptin neuron populations from OVX mice, the frequency of GABAergic spontaneous postsynaptic currents was increased in the PM; this increase was blunted by estradiol. In arcuate, but not AVPV, kisspeptin neurons, estradiol reduced miniature postsynaptic current amplitude independent of time of day. Using nonstationary fluctuation analysis and diazepam to manipulate GABA(A) receptor apparent affinity, the decrease in arcuate miniature postsynaptic current amplitude was attributed to decreased number of receptors bound by GABA. Time of day and estradiol feedback thus both target presynaptic and postsynaptic mechanisms to differentially regulate kisspeptin neurons via GABAergic transmission.
机译:促性腺激素释放激素(GnRH)的分泌受雌二醇反馈的调节。女性的这种反馈从负转为正。此切换取决于许多物种的一天中的时间。雌二醇的反馈很可能通过传入者传达。弓形核和前室-心室区(AVPV)的Kisspeptin神经元可能分别在负反馈和正反馈期间差异调节GnRH神经元。我们使用转基因小鼠与GFP识别的kisepteptin神经元测试了这两个群体中雌二醇和GABA能传递的每日调节以及对GABA的突触后反应。在AM(负反馈)或PM(正反馈)中研究是否用雌二醇(E)治疗的卵巢切除(OVX)小鼠。 GABAA受体的逆转潜力不受一天中的时间或雌二醇的影响。 GABA使OVX + E小鼠的弓形神经元的膜电位去极化;这种反应在OVX小鼠的细胞中变得迟钝。除了OVX PM组中GABA不会改变可归因于基线膜电位的PM超极化的膜电位之外,GABA使AVPV亲核肽神经元超极化。在来自OVX小鼠的两个Kisspeptin神经元群体中,PM中GABA能自发突触后电流的频率增加;这种增加被雌二醇抑制了。在弓形但不是AVPV的基索肽素神经元中,雌二醇降低了微型突触后电流幅度,与一天中的时间无关。使用非平稳波动分析和地西epa来操纵GABA(A)受体的表观亲和力,弓形微型突触后电流幅度的下降归因于GABA结合的受体数量减少。因此,一天中的时间和雌二醇反馈都针对突触前和突触后机制,以通过GABA能传递来差异调节吻肽神经元。

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