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Epigenetic regulation of puberty via Zinc finger protein-mediated transcriptional repression

机译:通过锌指蛋白介导的转录抑制对青春期进行表观遗传调控

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In primates, puberty is unleashed by increased GnRH release from the hypothalamus following an interval of juvenile quiescence. GWAS implicates Zinc finger ( ZNF ) genes in timing human puberty. Here we show that hypothalamic expression of several ZNF s decreased in agonadal male monkeys in association with the pubertal reactivation of gonadotropin secretion. Expression of two of these ZNF s, GATAD1 and ZNF573 , also decreases in peripubertal female monkeys. However, only GATAD1 abundance increases when gonadotropin secretion is suppressed during late infancy. Targeted delivery of GATAD1 or ZNF573 to the rat hypothalamus delays puberty by impairing the transition of a transcriptional network from an immature repressive epigenetic configuration to one of activation. GATAD1 represses transcription of two key puberty-related genes, KISS1 and TAC3 , directly, and reduces the activating histone mark H3K4me2 at each promoter via recruitment of histone demethylase KDM1A. We conclude that GATAD1 epitomizes a subset of ZNFs involved in epigenetic repression of primate puberty.
机译:在灵长类动物中,青春期间隔一段时间后,下丘脑GnRH释放增加,释放了青春期。 GWAS牵涉到锌手指(ZNF)基因在人类青春期的计时中。在这里,我们显示了与同性腺促性腺激素分泌的青春期重新激活相关的成年雄性猴子的一些ZNF的下丘脑表达降低。这两个ZNF的表达GATAD1和ZNF573在青春期雌性猴子中也降低。但是,在婴儿后期抑制促性腺激素分泌时,只有GATAD1丰度增加。 GATAD1或ZNF573向大鼠下丘脑的靶向递送通过损害转录网络从未成熟的抑制性表观遗传构型向激活之一的过渡而延迟了青春期。 GATAD1直接抑制两个关键的青春期相关基因KISS1和TAC3的转录,并通过募集组蛋白脱甲基酶KDM1A降低每个启动子处的激活组蛋白标记H3K4me2。我们得出的结论是,GATAD1代表了参与灵长类动物青春期表观遗传抑制的ZNF的子集。

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