Instituto Maimónides de Investigación Biomédica de Córdoba, 14004, Córdoba, Spain.
Department of Cell Biology, Physiology and Immunology, University of Córdoba, 14004, Córdoba, Spain.
Nat Commun. 2022 Aug 9;13(1):4663. doi: 10.1038/s41467-022-32347-4.
Kiss1 neurons, producing kisspeptins, are essential for puberty and fertility, but their molecular regulatory mechanisms remain unfolded. Here, we report that congenital ablation of the microRNA-synthesizing enzyme, Dicer, in Kiss1 cells, causes late-onset hypogonadotropic hypogonadism in both sexes, but is compatible with pubertal initiation and preserved Kiss1 neuronal populations at the infantile/juvenile period. Yet, failure to complete puberty and attain fertility is observed only in females. Kiss1-specific ablation of Dicer evokes disparate changes of Kiss1-cell numbers and Kiss1/kisspeptin expression between hypothalamic subpopulations during the pubertal-transition, with a predominant decline in arcuate-nucleus Kiss1 levels, linked to enhanced expression of its repressors, Mkrn3, Cbx7 and Eap1. Our data unveil that miRNA-biosynthesis in Kiss1 neurons is essential for pubertal completion and fertility, especially in females, but dispensable for initial reproductive maturation and neuronal survival in both sexes. Our results disclose a predominant miRNA-mediated inhibitory program of repressive signals that is key for precise regulation of Kiss1 expression and, thereby, reproductive function.
Kiss1 神经元产生 kisspeptins,对于青春期和生育能力至关重要,但它们的分子调节机制尚不清楚。在这里,我们报告说,在 Kiss1 细胞中先天性缺失 miRNA 合成酶 Dicer,会导致两性迟发性促性腺激素低下性性腺功能减退症,但与青春期启动和婴幼儿期 Kiss1 神经元群体的保留兼容。然而,只有雌性才会出现青春期完成和生育能力丧失的情况。Kiss1 特异性缺失 Dicer 会在青春期过渡期间引起下丘脑亚群中 Kiss1 细胞数量和 Kiss1/kisspeptin 表达的不同变化,弓状核 Kiss1 水平的显著下降与它的抑制因子 Mkrn3、Cbx7 和 Eap1 的表达增强有关。我们的数据揭示了 Kiss1 神经元中的 miRNA 合成对于青春期完成和生育能力至关重要,特别是在女性中,但对于两性的初始生殖成熟和神经元存活是可有可无的。我们的结果揭示了一个主要的 miRNA 介导的抑制信号程序,对于 Kiss1 表达和生殖功能的精确调节至关重要。