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下丘脑室旁核 CRH 神经元通过室旁核 GABA 神经元传递信号,抑制雌性小鼠 GnRH 脉冲发生器的频率。

Hypothalamic PVN CRH Neurons Signal Through PVN GABA Neurons to Suppress GnRH Pulse Generator Frequency in Female Mice.

机构信息

Department of Women and Children's Health, Faculty of Life Sciences and Medicine, King's College London, Guy's Campus, SE1 1UL, UK.

Reproductive Medicine Center, Affiliated Hospital of Guizhou Medical University, Guizhou 550004, China.

出版信息

Endocrinology. 2023 Apr 17;164(6). doi: 10.1210/endocr/bqad075.

Abstract

Corticotropin-releasing hormone (CRH) neurons in the paraventricular nucleus of the hypothalamus (PVN) are central to the stress response. Chemogenetic activation of PVN CRH neurons decreases LH pulse frequency but the mechanism is unknown. In the present study, optogenetic stimulation of PVN CRH neurons suppressed LH pulse frequency in estradiol-replaced ovariectomized CRH-cre mice, and this effect was augmented or attenuated by intra-PVN GABAA or GABAB receptor antagonism, respectively. PVN CRH neurons signal to local GABA neurons, which may provide a possible indirect mechanism by which PVN CRH neurons suppress LH pulse frequency. Optogenetic stimulation of potential PVN GABAergic projection terminals in the hypothalamic arcuate nucleus in ovariectomized estradiol-replaced Vgat-cre-tdTomato mice via an optic fiber implanted in the arcuate nucleus suppressed LH pulse frequency. To further determine whether PVN CRH neurons signal through PVN GABA neurons to suppress LH pulsatility, we combined recombinase mice with intersectional vectors to selectively target these neurons. CRH-cre::Vgat-FlpO mice expressing the stimulatory opsin ChRmine in non-GABAergic CRH neurons alone or in combination with the inhibitory opsin NpHR3.3 in non-CRH-expressing GABA neurons in the PVN were used. Optogenetic stimulation of non-GABAergic CRH neurons suppressed pulsatile LH secretion; however, LH pulse frequency was not affected when CRH neurons were stimulated and PVN GABA neurons were simultaneously inhibited. Together, these studies demonstrate that suppression of LH pulse frequency in response to PVN CRH neuronal activation is mediated by GABAergic signalling intrinsic to the PVN and may incorporate PVN GABAergic projection to the hypothalamic GnRH pulse generator.

摘要

促肾上腺皮质释放激素(CRH)神经元位于下丘脑室旁核(PVN),是应激反应的核心。PVN CRH 神经元的化学遗传激活可降低 LH 脉冲频率,但机制尚不清楚。在本研究中,光遗传刺激 PVN CRH 神经元可抑制雌激素替代卵巢切除的 CRH-cre 小鼠的 LH 脉冲频率,而这种效应分别被 PVN GABAA 或 GABAB 受体拮抗剂增强或减弱。PVN CRH 神经元向局部 GABA 神经元发出信号,这可能为 PVN CRH 神经元抑制 LH 脉冲频率提供了一种可能的间接机制。通过植入弓状核的光纤,光遗传刺激卵巢切除、雌激素替代的 Vgat-cre-tdTomato 小鼠的弓状核中的潜在 PVN GABA 能投射末梢,可抑制 LH 脉冲频率。为了进一步确定 PVN CRH 神经元是否通过 PVN GABA 神经元传递信号来抑制 LH 波动性,我们结合重组酶小鼠和交叉向量来选择性地靶向这些神经元。单独表达兴奋性 opsin ChRmine 的 CRH-cre::Vgat-FlpO 小鼠或在 PVN 中表达非 CRH 的 GABA 神经元中同时表达抑制性 opsin NpHR3.3 的 CRH-cre::Vgat-FlpO 小鼠用于研究。非 GABA 能 CRH 神经元的光遗传刺激可抑制 LH 脉冲分泌;然而,当刺激 CRH 神经元同时抑制 PVN GABA 神经元时,LH 脉冲频率不受影响。综上所述,这些研究表明,PVN CRH 神经元激活后抑制 LH 脉冲频率是由 PVN 内的 GABA 能信号转导介导的,并且可能整合了 PVN GABA 能投射到下丘脑 GnRH 脉冲发生器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e54/10234117/e1415589d023/bqad075f1.jpg

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