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首页> 外文期刊>Brain research. Molecular brain research >Sex differences in the regulation of tyrosine hydroxylase gene transcription by estrogen in the locus coeruleus of TH9-LacZ transgenic mice.
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Sex differences in the regulation of tyrosine hydroxylase gene transcription by estrogen in the locus coeruleus of TH9-LacZ transgenic mice.

机译:在TH9-LacZ转基因小鼠的蓝斑中,雌激素调节酪氨酸羟化酶基因转录的性别差异。

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Although estrogen is recognized increasingly as having an important role in modulating extrahypothalamic brain function, the mechanisms through which this occur are not well established. The norepinephrine (NE) neurons of the locus coeruleus provide an important neuromodulatory influence upon multiple neural networks throughout the brain and estrogen has been implicated in their regulation. Using a tyrosine hydroxylase (TH) promoter-LacZ transgenic mouse model, which enables rates of TH gene transcription to be examined in vivo, we have examined here whether estrogen regulates expression of the TH gene in the locus coeruleus of males and females. Optical area measurements of Xgal reaction product in the locus coeruleus revealed that gonadectomy exerted opposite effects on TH gene transcription in males and females; transgene expression was increased in males (P<0.01) but reduced in females (P<0.05). Estrogen reversed these effects in both sexes by suppressing gene expression in males (P<0.05) but elevating it in the female (P<0.05). These studies reveal a marked and unexpected sex difference in the regulation of TH gene activity in the mouse. While estrogen in the male, synthesized from circulating testosterone, suppresses TH gene transcription, estrogen in the female enhances TH promoter activity. The present results indicate that estrogen may exert very different sex-dependent effects upon the biosynthesis of NE within the locus coeruleus.
机译:尽管越来越多地认识到雌激素在调节下丘脑外脑功能中具有重要作用,但这种作用发生的机制尚不明确。蓝斑脑的去甲肾上腺素(NE)神经元对整个大脑的多个神经网络具有重要的神经调节作用,并且雌激素已参与其调节。使用酪氨酸羟化酶(TH)启动子-LacZ转基因小鼠模型,可以在体内检查TH基因的转录速率,我们在这里检查了雌激素是否调节男性和女性轨迹蓝斑中TH基因的表达。蓝斑中Xgal反应产物的光学面积测量表明,性腺切除术对男性和女性的TH基因转录产生相反的影响。男性中转基因表达增加(P <0.01),而女性中转基因表达降低(P <0.05)。雌激素通过抑制男性的基因表达(P <0.05)而升高女性的表达(P <0.05),从而逆转了这两种性别的作用。这些研究揭示了小鼠TH基因活性调控中明显的和出乎意料的性别差异。由循环睾丸激素合成的雄性雌激素抑制TH基因转录,而雌性雌激素则增强TH启动子活性。目前的结果表明,雌激素可能对蓝斑中NE的生物合成产生非常不同的性别依赖性作用。

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