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Enhanced at Puberty-1 (Eap1) Expression Critically Regulates the Onset of Puberty Independent of Hypothalamic Kiss1 Expression

机译:在青春期1(Eap1)表达增强严重调节青春期的发作,独立于下丘脑Kiss1表达

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>Background/Aims: Enhance at puberty-1 (Eap1) is an intronless gene that regulates the onset of puberty through a network of hypothalamic genes. However, precise mechanistic events essential for Eap1-regulation of puberty have not been fully elucidated. Eap1 is thought to promote the initiation of puberty through regulation of the hypothalamic metastasis-suppressor KiSS1. We aim to investigate this hypothesis by genetically perturbing Eap1 through RNA interference in vivo. Methods: We first engineered and optimized four sets of shRNAs that target rat Eap1 mRNA as well as one negative control shRNA. After generating lentiviral (LV) particles, we examined the suppression of Eap1 in NRK-54E cell line to select the most efficient one. Sequencelly, LV-Eap1-shRNA or controls including LV-eGFP and saline were intraventricular microinjected into 21-day-old rats. Rats were raised in appropriate conditions and we examined the time of vaginal opening, ovary physiology as well as hypothalamic puberty-regulatory genes at three developmental stages: juvenile (postnatal day PND25), early puberty (PND35), adult (PND42). Results: Hypothalamic suppression of Eap1 delayed the onset of rat vaginal opening. Hematoxylin and eosin (H&E) staining revealed a significant reduction of corpus luteum (CL) at PND35, but at PND42 CL levels were normal relative to control. In conjunction with differences in phenotype and ovary morphology, GnRH expression and transcripts were also reduced at PND25 and PND35, while their levels were similar to control at PND42. KiSS1 mRNA and protein levels were not significantly different at all three developmental stages. Conclusion: Eap1 expression critically regulates puberty as well as GnRH expression. However, Eap1-regulation of puberty may not necessitate KiSS1/GPR54 signaling.
机译:> 背景/目标: 青春期1( Eap1 )基因的增强是一种无内含子基因,可通过一个神经网络调节青春期的发作。下丘脑基因。但是,尚未完全阐明对 Eap1 调节青春期至关重要的精确机制事件。人们认为 Eap1 通过调节下丘脑转移抑制因子 KiSS1 来促进青春期的开始。我们的目的是通过体内 RNA干扰对 Eap1 进行基因扰动来研究这一假设。 方法: 我们首先设计和优化了四套针对大鼠 Eap1 mRNA的shRNA和一个阴性对照shRNA。产生慢病毒(LV)颗粒后,我们研究了NRK-54E细胞系中 Eap1 的抑制作用,以选择最有效的一种。依次向21日龄大鼠脑室内显微注射LV- Eap1 -shRNA或包括LV-eGFP和盐水的对照。在适当的条件下饲养大鼠,我们检查了三个发育阶段的阴道开放时间,卵巢生理以及下丘脑青春期调节基因:少年(出生后一天PND25),青春期早期(PND35),成人(PND42)。 结果: 下丘脑抑制 Eap1 会延迟大鼠阴道开放的发作。苏木精和曙红(H&E)染色显示PND35处黄体(CL)明显减少,但PND42 CL水平相对于对照组是正常的。结合表型和卵巢形态的差异,PND25和PND35的 GnRH 表达和转录本也降低了,而它们的水平与PND42的对照相似。 KiSS1 mRNA和蛋白质水平在所有三个发育阶段均无显着差异。 结论: Eap1 表达严格调节青春期以及 GnRH 表达。但是,青春期的 Eap1 调节可能并不需要 KiSS1 / GPR54信号传导。

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