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首页> 外文期刊>Journal of neuroendocrinology >The Effects of GABA Agonists on Glutamic Acid Decarboxylase, GABA-Transaminase, Activin, Salmon Gonadotrophin-Releasing Hormone and Tyrosine Hydroxylase mRNA in the Goldfish (Carassius auratus) Neuroendocrine Brain.
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The Effects of GABA Agonists on Glutamic Acid Decarboxylase, GABA-Transaminase, Activin, Salmon Gonadotrophin-Releasing Hormone and Tyrosine Hydroxylase mRNA in the Goldfish (Carassius auratus) Neuroendocrine Brain.

机译:GABA激动剂对金鱼(Car鱼)神经内分泌脑中谷氨酸脱羧酶,GABA转氨酶,激活素,鲑鱼促性腺激素释放激素和酪氨酸羟化酶mRNA的影响。

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摘要

GABA plays a pivotal role in reproduction by regulating luteinising hormone (LH) release from the anterior pituitary. Current evidence indicates that there is a prominent stimulatory effect of GABA on LH release in teleost fish which results from enhanced gonadotrophin-releasing hormone (GnRH) release and decreased dopamine turnover in the brain and pituitary. We hypothesised that there may be additional mechanisms underlying LH release in goldfish and investigated the relative mRNA levels of GABA synthesising enzymes (GAD65 and GAD67), degrading enzyme (GABA-T), activin betaa and betab, salmon GnRH (sGnRH), and tyrosine hydroxylase (TH) with the real-time reverse transcriptase-polymerase chain reaction after GABA agonist treatment. Sexually regressed female goldfish were i.p. injected with either the GABA(A) agonist muscimol (1 microg/g body weight) or the GABA(B) agonist baclofen (10 microg/g body weight). Both agonists significantly increased serum LH after 6 h. Muscimol decreased GAD65 (approximately ten-fold), GABA-T (approximately 15-fold) and TH (approximately three-fold) mRNA in the telencephalon. Baclofen significantly reduced GAD67 (approximately two-fold) and GABA-T (approximately two-fold) mRNA levels in the hypothalamus. Activin betaa, but not activin betab, steady-state mRNA was increased approximately three- to four-fold in both the hypothalamus and telencephalon after baclofen treatment. There was no change in sGnRH mRNA levels in either tissue after GABA agonist treatment. We show that the GABA(A) and GABA(B) receptor agonists have differing and rapid effects on gene transcription in the goldfish neuroendocrine brain and, by affecting specific targets, we identify putative genomic mechanisms underlying GABA-stimulated LH release in fish.
机译:GABA通过调节从垂体前叶释放的黄体生成激素(LH)在生殖中起关键作用。目前的证据表明,GABA对硬骨鱼的LH释放具有显着的刺激作用,这是由于促性腺激素释放激素(GnRH)释放增强以及大脑和垂体的多巴胺转换减少所致。我们假设金鱼中LH释放可能有其他机制,并研究了GABA合成酶(GAD65和GAD67),降解酶(GABA-T),激活素betaa和betab,鲑鱼GnRH(sGnRH)和酪氨酸的相对mRNA水平羟化酶(TH)与GABA激动剂处理后的实时逆转录聚合酶链反应。雌性性退缩的金鱼注射GABA(A)激动剂麝香酚(1微克/克体重)或GABA(B)激动剂巴氯芬(10微克/克体重)。两种激动剂均在6小时后显着增加血清LH。 Muscimol降低了端脑中的GAD65(约10倍),GABA-T(约15倍)和TH(约3倍)mRNA。巴氯芬可明显降低下丘脑中的GAD67(约2倍)和GABA-T(约2倍)mRNA水平。巴氯芬治疗后,下丘脑和端脑中的激活素betaa(而不是激活素betab)的稳态mRNA增加了约三到四倍。 GABA激动剂治疗后,两个组织的sGnRH mRNA水平均无变化。我们表明,GABA(A)和GABA(B)受体激动剂对金鱼神经内分泌脑中的基因转录具有不同且快速的影响,并且通过影响特定靶标,我们确定了潜在的基因组机制,其是GABA刺激鱼体内LH释放的基础。

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