首页> 外文期刊>Experimental and clinical endocrinology and diabetes: Official journal, German Society of Endocrinology [and] German Diabetes Association >Implication of Dopaminergic Systems on GnRH and GnRHR Genes Expression in the Hypothalamus and GnRH-R Gene Expression in the Anterior Pituitary Gland of Anestrous Ewes.
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Implication of Dopaminergic Systems on GnRH and GnRHR Genes Expression in the Hypothalamus and GnRH-R Gene Expression in the Anterior Pituitary Gland of Anestrous Ewes.

机译:多巴胺能系统对下丘脑下丘脑GnRH和GnRHR基因表达以及前额叶垂体GnRH-R基因表达的影响。

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摘要

We examined by Real-time PCR how prolonged inhibition of dopaminergic D-2 receptors (DA-2) in the hypothalamus of anestrous ewes by infusion of sulpiride into the third cerebral ventricle affected GnRH and GnRH-R gene expression in discrete parts of this structure and GnRH-R gene expression in the anterior pituitary. Blockaded DA-2 receptors significantly decreased GnRH mRNA levels in the ventromedial hypothalamus but did not evidently affect GnRH mRNA in the preoptic/anterior hypothalamic area. Blockaded DA-2 receptors led to different responses in GnRH-R mRNA in various parts of the hypothalamus; increased GnRH-R mRNA levels in the preoptic/anterior hypothalamic area, and decreased GnRH-R mRNA amounts in the ventromedial hypothalamus stalk/median eminence. An infusion of sulpiride into the III-rd ventricle increased GnRH mRNA levels in the anterior pituitary gland and LH secretion. It is suggested that the increase of GnRH gene expression in the anterior pituitary gland and LH secretion in sulpiride-treated ewes are related with an increase of biosynthesis GnRH with concomitant decreased biosynthesis of GnRH-R protein in the ventromedial hypothalamus/stalk median eminence allowing to an increase of GnRH release.
机译:我们通过实时PCR检查了通过向第三脑室中注入舒必利而延长了对发情母羊下丘脑中多巴胺能D-2受体(DA-2)的抑制,从而影响了该结构离散部分中的GnRH和GnRH-R基因表达和GnRH-R基因在垂体前叶的表达。受阻的DA-2受体可显着降低腹膜下丘脑中GnRH mRNA的水平,但对视前/下丘脑前区GnRH mRNA的影响不明显。阻断的DA-2受体导致下丘脑各个部位GnRH-R mRNA的反应不同;增加了视神经前下丘脑区的GnRH-R mRNA水平,并降低了腹膜下丘脑茎/中位隆突中GnRH-R mRNA的含量。向第三脑室注入舒必利会增加垂体前叶腺体中的GnRH mRNA水平和LH分泌。提示,经舒必利处理的母羊垂体前叶腺体中GnRH基因表达的增加和LH分泌与生物合成GnRH的增加有关,同时腹侧下丘脑/茎中位突出的GnRH-R蛋白的生物合成减少,从而导致GnRH释放增加。

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