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中枢生物钟向促性腺激素释放激素神经元输出的发情周期可塑性:对排卵前激增的影响。

Estrous Cycle Plasticity in the Central Clock Output to Kisspeptin Neurons: Implications for the Preovulatory Surge.

作者信息

Jamieson Bradley B, Bouwer Gregory T, Campbell Rebecca E, Piet Richard

机构信息

Centre for Neuroendocrinology & Department of Physiology, University of Otago, Dunedin 9054, New Zealand.

Brain Health Research Institute & Department of Biological Sciences, Kent State University, Kent, OH 44242, USA.

出版信息

Endocrinology. 2021 Jun 1;162(6). doi: 10.1210/endocr/bqab071.

Abstract

Coordination of ovulation and behavior is critical to reproductive success in many species. During the female estrous cycle, the preovulatory gonadotropin surge occurs when ovarian follicles reach maturity and, in rodents, it begins just before the daily onset of activity, ensuring that ovulation coincides with sex behavior. Timing of the surge relies on projections from the suprachiasmatic nucleus (SCN), the locus of the central circadian clock, to hypothalamic circuits that regulate gonadotropin secretion. The cellular mechanisms through which the SCN controls these circuits and gates the preovulatory surge to the appropriate estrous cycle stage, however, are poorly understood. We investigated in mice the functional impact of SCN arginine-vasopressin (AVP) neuron projections to kisspeptin (Kiss1) neurons in the rostral periventricular area of the third ventricle (RP3VKiss1), responsible for generating the preovulatory surge. Conditional anterograde tracing revealed that SCNAVP neurons innervate approximately half of the RP3VKiss1 neurons. Optogenetic activation of SCNAVP projections in brain slices caused an AVP-mediated stimulation of RP3VKiss1 action potential firing in proestrus, the cycle stage when the surge is generated. This effect was less prominent in diestrus, the preceding cycle stage, and absent in estrus, following ovulation. Remarkably, in estrus, activation of SCNAVP projections resulted in GABA-mediated inhibition of RP3VKiss1 neuron firing, an effect rarely encountered in other cycle stages. Together, these data reveal functional plasticity in SCNAVP neuron output that drives opposing effects on RP3VKiss1 neuron activity across the ovulatory cycle. This might contribute to gating activation of the preovulatory surge to the appropriate estrous cycle stage.

摘要

排卵与行为的协调对许多物种的繁殖成功至关重要。在雌性发情周期中,当卵巢卵泡成熟时会出现排卵前促性腺激素激增,在啮齿动物中,这种激增恰好在每日活动开始前开始,确保排卵与性行为同步。激增的时间依赖于视交叉上核(SCN)(中央昼夜节律钟的所在位置)向调节促性腺激素分泌的下丘脑回路的投射。然而,SCN控制这些回路并将排卵前激增调节到适当发情周期阶段的细胞机制却知之甚少。我们在小鼠中研究了SCN精氨酸加压素(AVP)神经元向第三脑室室周吻侧区域(RP3VKiss1)的吻肽(Kiss1)神经元投射的功能影响,RP3VKiss1神经元负责产生排卵前激增。条件性顺行追踪显示,SCN AVP神经元支配约一半的RP3VKiss1神经元。脑片上SCN AVP投射的光遗传学激活在发情前期(产生激增的周期阶段)引起了AVP介导的RP3VKiss1动作电位发放的刺激。这种效应在发情后期(前一个周期阶段)不太明显,而在排卵后的发情期则不存在。值得注意的是,在发情期,SCN AVP投射的激活导致GABA介导的RP3VKiss1神经元发放抑制,这种效应在其他周期阶段很少见。总之,这些数据揭示了SCN AVP神经元输出的功能可塑性,这种可塑性在排卵周期中对RP3VKiss1神经元活动产生相反的影响。这可能有助于将排卵前激增的激活调节到适当的发情周期阶段。

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