Selective depletion of kisspeptin neurons in the hypothalamic arcuate nucleus in early juvenile life reduces pubertal LH secretion and delays puberty onset in mice

IF 4.4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Eulalia A. Coutinho, Lourdes A. Esparza, Paige H. Steffen, Reanna Liaw, Shreyana Bolleddu, Alexander S. Kauffman
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Abstract

Puberty is the critical developmental transition to reproductive capability driven by the activation of gonadotropin-releasing hormone (GnRH) neurons. The complex neural mechanisms underlying pubertal activation of GnRH secretion still remain unknown, yet likely include kisspeptin neurons. However, kisspeptin neurons reside in several hypothalamic areas and the specific kisspeptin population timing pubertal onset remains undetermined. To investigate this, we strategically capitalized on the differential ontological expression of the Kiss1 gene in different hypothalamic nuclei to selectively ablate just arcuate kisspeptin neurons (aka KNDy neurons) during the early juvenile period, well before puberty, while sparing RP3V kisspeptin neurons. Both male and female transgenic mice with a majority of their KNDy neurons ablated (KNDyABL) by diphtheria toxin treatment in juvenile life demonstrated significantly delayed puberty onset and lower peripubertal LH secretion than controls. In adulthood, KNDyABL mice demonstrated normal in vivo LH pulse frequency with lower basal and peak LH levels, suggesting that only a small subset of KNDy neurons is sufficient for normal GnRH pulse timing but more KNDy cells are needed to secrete normal LH concentrations. Unlike prior KNDy ablation studies in rats, there was no alteration in the occurrence or magnitude of estradiol-induced LH surges in KNDyABL female mice, indicating that a complete KNDy neuronal population is not essential for normal LH surge generation. This study teases apart the contributions of different kisspeptin neural populations to the control of puberty onset, demonstrating that a majority of KNDy neurons in the arcuate nucleus are necessary for the proper timing of puberty in both sexes.

在小鼠幼年时期选择性消耗下丘脑弓状核中的吻肽素神经元可减少青春期LH分泌并延迟青春期的到来。
青春期是由促性腺激素释放激素(GnRH)神经元激活驱动的向生殖能力过渡的关键发育阶段。青春期激活促性腺激素释放激素(GnRH)分泌的复杂神经机制仍然未知,但很可能包括吻肽(kisspeptin)神经元。然而,kisspeptin神经元分布在下丘脑的多个区域,而青春期开始时的特定kisspeptin群体仍未确定。为了研究这个问题,我们战略性地利用 Kiss1 基因在下丘脑不同核团中的不同本体表达,在青春期之前的幼年时期选择性地消减弧形吻肽素神经元(又称 KNDy 神经元),同时保留 RP3V 吻肽素神经元。与对照组相比,在幼年时期通过白喉毒素处理消减了大部分 KNDy 神经元(KNDyABL)的雄性和雌性转基因小鼠的青春期开始时间明显推迟,围青春期 LH 分泌也较低。成年后,KNDyABL小鼠体内LH脉冲频率正常,但基础和峰值LH水平较低,这表明只有一小部分KNDy神经元足以维持正常的GnRH脉冲时间,但需要更多的KNDy细胞才能分泌正常浓度的LH。与之前在大鼠中进行的 KNDy 消融研究不同,KNDyABL 雌性小鼠中雌二醇诱导的 LH 激增的发生或幅度没有发生改变,这表明完整的 KNDy 神经元群对正常 LH 激增的产生并不重要。这项研究揭示了不同的Kisspeptin神经元群对控制青春期开始的贡献,证明了弓状核中的大多数KNDy神经元对两性青春期的适当时间都是必要的。
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来源期刊
The FASEB Journal
The FASEB Journal 生物-生化与分子生物学
CiteScore
9.20
自引率
2.10%
发文量
6243
审稿时长
3 months
期刊介绍: The FASEB Journal publishes international, transdisciplinary research covering all fields of biology at every level of organization: atomic, molecular, cell, tissue, organ, organismic and population. While the journal strives to include research that cuts across the biological sciences, it also considers submissions that lie within one field, but may have implications for other fields as well. The journal seeks to publish basic and translational research, but also welcomes reports of pre-clinical and early clinical research. In addition to research, review, and hypothesis submissions, The FASEB Journal also seeks perspectives, commentaries, book reviews, and similar content related to the life sciences in its Up Front section.
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