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Gonadotropin-releasing hormone regulates expression of the DNA damage repair gene, Fanconi anemia A, in pituitary gonadotroph cells

机译:促性腺激素释放激素调节垂体促性腺细胞DNa损伤修复基因Fanconi贫血a的表达

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摘要

Gonadal function is critically dependant on regulated secretion of the gonadotropin hormones from anterior pituitary gonadotroph cells. Gonadotropin biosynthesis and release is triggered by the binding of hypothalamic GnRH to GnRH receptor expressed on the gonadotroph cell surface. The repertoire of regulatory molecules involved in this process are still being defined. We used the mouse L beta T2 gonadotroph cell line, which expresses both gonadotropin hormones, as a model to investigate GnRH regulation of gene expression and differential display reverse transcription-polymerase chain reaction (RT-PCR) to identify and isolate hormonally induced changes. This approach identified Fanconi anemia a (Fanca), a gene implicated in DNA damage repair, as a differentially expressed transcript. Mutations in Fanca account for the majority of cases of Fanconi anemia (FA), a recessively inherited disease identified by congenital defects, bone marrow failure, infertility, and cancer susceptibility. We confirmed expression and hormonal regulation of Fanca mRNA by quantitative RT-PCR, which showed that GnRH induced a rapid, transient increase in Fanca mRNA. Fanca protein was also acutely upregulated after GnRH treatment of L beta T2 cells. In addition, Fanca gene expression was confined to mature pituitary gonadotrophs and adult mouse pituitary and was not expressed in the immature alpha T3-1 gonadotroph cell line. Thus, this study extends the expression profile of Fanca into a highly specialized endocrine cell and demonstrates hormonal regulation of expression of the Fanca locus. We suggest that this regulatory mechanism may have a crucial role in the GnRH-response mechanism of mature gonadotrophs and perhaps the etiology of FA.
机译:性腺功能严重依赖于垂体前叶促性腺激素细胞分泌的促性腺激素。促性腺激素的生物合成和释放是由下丘脑GnRH与性腺营养细胞表面表达的GnRH受体结合而触发的。该过程中涉及的调节分子的种类仍在确定中。我们使用小鼠LβT2促性腺激素细胞株,该细胞表达两种促性腺激素激素,作为研究基因表达的GnRH调节和差异显示逆转录聚合酶链反应(RT-PCR)的模型,以鉴定和分离激素诱导的变化。该方法鉴定了与DNA损伤修复有关的Fanconi贫血a(Fanca),是差异表达的转录本。范卡尼贫血(FA)是由先天性缺陷,骨髓衰竭,不育和癌症易感性所鉴定的隐性遗传疾病,在范卡尼贫血(FA)中占大多数。我们通过定量RT-PCR证实了Fanca mRNA的表达和激素调节,这表明GnRH诱导了Fanca mRNA的快速,瞬时增加。 GnRH处理LβT2细胞后,Fanca蛋白也被急性上调。此外,Fanca基因表达仅限于成熟的垂体促性腺激素和成年小鼠垂体,并且在未成熟的αT3-1促性腺激素细胞系中不表达。因此,这项研究将Fanca的表达谱扩展到高度专业化的内分泌细胞中,并证明了Fanca基因座表达的激素调控。我们建议这种调节机制可能在成熟的性腺营养动物的GnRH应答机制中可能起关键作用,也许在FA的病因学中也起着至关重要的作用。

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