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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Sex steroid regulation of glutamate decarboxylase mRNA expression in goldfish brain is sexually dimorphic.
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Sex steroid regulation of glutamate decarboxylase mRNA expression in goldfish brain is sexually dimorphic.

机译:性类固醇调节金鱼脑中谷氨酸脱羧酶mRNA的表达具有两性性。

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Testosterone and oestradiol can modulate GABA synthesis in sexually regressed goldfish. Here we investigated their effects on the mRNA expression of two isoforms of the GABA synthesizing enzyme glutamate decarboxylase (GAD(65) and GAD(67), EC 4.1.1.15). Full-length GAD clones were isolated from a goldfish cDNA library and sequenced. Goldfish GAD(65) encodes a polypeptide of 583 amino acid residues, which is 77% identical to human GAD(65). Goldfish GAD(67) encodes a polypeptide of 587 amino acid residues and is 82% identical to human GAD(67). Goldfish GAD(65) and GAD(67) are 63% identical. Sexually regressed male and female goldfish were implanted with solid silastic pellets containing testosterone, oestradiol or no steroid. Semiquantitative PCR analysis showed that oestradiol significantly increased GAD(65) mRNA expression in female hypothalamus and telencephalon, while testosterone resulted in a significant increase only in telencephalon. GAD(67) mRNA levels were not affected by steroids in females. In contrast, both steroids induced significant decreases of GAD(65) and GAD(67) mRNA levels in male hypothalamus, but had no effect on GAD mRNA expression in male telencephalon. Our results indicate that modulation of GAD mRNA expression is a possible mechanism for steroid action on GABA synthesis, which may have opposite effects in males and females.
机译:睾丸激素和雌二醇可以调节性退化金鱼中的GABA合成。在这里,我们研究了它们对GABA合成酶谷氨酸脱羧酶的两种同工型的mRNA表达的影响(GAD(65)和GAD(67),EC 4.1.1.15)。从金鱼cDNA文库中分离出全长GAD克隆并测序。金鱼GAD(65)编码一个583个氨基酸残基的多肽,与人GAD(65)的同源性为77%。金鱼GAD(67)编码一个587个氨基酸残基的多肽,与人GAD(67)的同源性为82%。金鱼GAD(65)和GAD(67)的一致性为63%。在性退缩的雄性和雌性金鱼上植入含有睾丸激素,雌二醇或不含类固醇的固体硅橡胶颗粒。半定量PCR分析表明,雌二醇显着增加了女性下丘脑和端脑的GAD(65)mRNA表达,而睾丸激素仅导致端脑的显着增加。 GAD(67)mRNA水平不受雌激素影响。相比之下,两种类固醇均诱导雄性下丘脑GAD(65)和GAD(67)mRNA水平显着降低,但对雄性次脑的GAD mRNA表达没有影响。我们的结果表明,GAD mRNA表达的调节是类固醇对GABA合成起作用的可能机制,可能在雄性和雌性中具有相反的作用。

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