kiss1和kiss1r基因启动子甲基化模式在青春期的变化。

Genetics and Epigenetics Pub Date : 2013-10-24 eCollection Date: 2013-01-01 DOI:10.4137/GEG.S12897
Amanda K Wyatt, Monika Zavodna, Jean L Viljoen, Jo-Ann L Stanton, Neil J Gemmell, Christine L Jasoni
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引用次数: 22

摘要

哺乳动物青春期的开始是由Kisspeptin (Kiss1)信号通过其受体(Kiss1r/GPR54)在促性腺激素释放激素(GnRH)神经元上的增加所支持的。携带Kiss1或Kiss1r基因功能缺失突变的动物和人类无法度过青春期。青春期的时间取决于环境因素,而青春期时间的可塑性提示了一种将环境信号转化为Kiss1/Kiss1r基因表达模式的机制。表观遗传学是一种强大的机制,能够以依赖环境的方式控制基因的表达。我们研究了表观遗传DNA甲基化是否与青春期基因表达变化有关。我们用亚硫酸氢盐- pcr -焦磷酸测序法确定了雌性大鼠青春期前后Kiss1和Kiss1r启动子的甲基化。Kiss1和Kiss1r均表现出高度显著的青春期特异性启动子甲基化差异模式。通过鉴定与青春期相关的关键差异甲基化残基,这些发现将对进一步研究青春期过渡期间基因表达的控制具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Changes in methylation patterns of kiss1 and kiss1r gene promoters across puberty.

Changes in methylation patterns of kiss1 and kiss1r gene promoters across puberty.

Changes in methylation patterns of kiss1 and kiss1r gene promoters across puberty.

Changes in methylation patterns of kiss1 and kiss1r gene promoters across puberty.

The initiation of mammalian puberty is underpinned by an increase in Kisspeptin (Kiss1) signaling via its receptor (Kiss1r/GPR54) on gonadotropin-releasing hormone (GnRH) neurons. Animals and humans with loss-of-function mutations in Kiss1 or Kiss1r fail to go through puberty. The timing of puberty is dependent on environmental factors, and malleability in puberty timing suggests a mechanism that can translate environmental signals into patterns of Kiss1/Kiss1r gene expression. Epigenetics is a powerful mechanism that can control gene expression in an environment-dependent manner. We investigated whether epigenetic DNA methylation is associated with gene expression changes at puberty. We used bisulfite-PCR-pyrosequencing to define the methylation in the promoters of Kiss1 and Kiss1r before and after puberty in female rats. Both Kiss1 and Kiss1r showed highly significant puberty-specific differential promoter methylation patterns. By identifying key differentially methylated residues associated with puberty, these findings will be important for further studies investigating the control of gene expression across the pubertal transition.

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