首页> 美国卫生研究院文献>Endocrinology >Impaired GABAB Receptor Signaling Dramatically Up-Regulates Kiss1 Expression Selectively in Nonhypothalamic Brain Regions of Adult but Not Prepubertal Mice
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Impaired GABAB Receptor Signaling Dramatically Up-Regulates Kiss1 Expression Selectively in Nonhypothalamic Brain Regions of Adult but Not Prepubertal Mice

机译:受损的GABA B受体信号显着上调成人而非下青春期小鼠非下丘脑区域中的Kiss1选择性表达。

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摘要

Kisspeptin, encoded by Kiss1, stimulates reproduction and is synthesized in the hypothalamic anteroventral periventricular and arcuate nuclei. Kiss1 is also expressed at lower levels in the medial amygdala (MeA) and bed nucleus of the stria terminalis (BNST), but the regulation and function of Kiss1 there is poorly understood. γ-Aminobutyric acid (GABA) also regulates reproduction, and female GABAB1 receptor knockout (KO) mice have compromised fertility. However, the interaction between GABAB receptors and Kiss1 neurons is unknown. Here, using double-label in situ hybridization, we first demonstrated that a majority of hypothalamic Kiss1 neurons coexpress GABAB1 subunit, a finding also confirmed for most MeA Kiss1 neurons. Yet, despite known reproductive impairments in GABAB1KO mice, Kiss1 expression in the anteroventral periventricular and arcuate nuclei, assessed by both in situ hybridization and real-time PCR, was identical between adult wild-type and GABAB1KO mice. Surprisingly, however, Kiss1 levels in the BNST and MeA, as well as the lateral septum (a region normally lacking Kiss1 expression), were dramatically increased in both GABAB1KO males and females. The increased Kiss1 levels in extrahypothalamic regions were not caused by elevated sex steroids (which can increase Kiss1 expression), because circulating estradiol and testosterone were equivalent between genotypes. Interestingly, increased Kiss1 expression was not detected in the MeA or BNST in prepubertal KO mice of either sex, indicating that the enhancements in extrahypothalamic Kiss1 levels initiate during/after puberty. These findings suggest that GABAB signaling may normally directly or indirectly inhibit Kiss1 expression, particularly in the BNST and MeA, and highlight the importance of studying kisspeptin populations outside the hypothalamus.
机译:由Kiss1编码的Kisspeptin刺激繁殖,并在下丘脑前脑室周围和弓形核中合成。 Kiss1在内侧杏仁核(MeA)和纹状体的床核(BNST)中也以较低的水平表达,但是那里对Kiss1的调节和功能了解甚少。 γ-氨基丁酸(GABA)也调节繁殖,雌性GABAB1受体敲除(KO)小鼠的生育能力受到损害。但是,GABA B受体和Kiss1神经元之间的相互作用是未知的。在这里,使用双标记原位杂交,我们首先证明了大多数下丘脑Kiss1神经元共表达GABAB1亚基,这一发现也证实了大多数MeA Kiss1神经元。然而,尽管已知在GABA B1KO小鼠中存在生殖损伤,但通过原位杂交和实时PCR评估的成年野生型和GABA B1KO小鼠在前房室周围和弓形核中的Kiss1表达相同。然而,令人惊讶的是,雄性和雌性的GABAB1KO中,BNST和MeA中的Kiss1水平以及侧隔(通常缺乏Kiss1表达的区域)均显着增加。下丘脑区域Kiss1水平的升高不是由性类固醇升高引起的(这可以增加Kiss1表达),因为基因型之间循环的雌二醇和睾丸激素相当。有趣的是,在任一性别的青春期前KO小鼠的MeA或BNST中均未检测到Kiss1表达增加,这表明下丘脑外Kiss1水平的增强在青春期期间/之后开始。这些发现表明,GABA B信号通常可以直接或间接抑制Kiss1表达,特别是在BNST和MeA中,并且强调研究下丘脑以外的Kisspeptin群体的重要性。

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