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首页> 外文期刊>Journal of neuroendocrinology >Sex differences in the brain expression of steroidogenic molecules under basal conditions and after gonadectomy
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Sex differences in the brain expression of steroidogenic molecules under basal conditions and after gonadectomy

机译:基础条件下和促进术后毒性分子脑表达的性差异

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摘要

Abstract The brain is a steroidogenic tissue. It expresses key molecules involved in the synthesis and metabolism of neuroactive steroids, such as steroidogenic acute regulatory protein (St AR ), translocator protein 18?kDa ( TSPO ), cytochrome P450 cholesterol side‐chain cleavage enzyme (P450scc), 3β‐hydroxysteroid dehydrogenases (3β‐ HSD ), 5α‐reductases (5α‐R) and 3α‐hydroxysteroid oxidoreductases (3α‐ HSOR ). Previous studies have shown that the levels of brain steroids are different in male and female rats under basal conditions and after gonadectomy. In the present study, we assessed gene expression of key neurosteroidogenic molecules in the cerebral cortex and cerebellum of gonadally intact and gonadectomised adult male and female rats. In the cerebellum, the basal mRNA levels of St AR and 3α‐ HSOR were significantly higher in females than in males. By contrast, the mRNA levels of TSPO and 5α‐R were significantly higher in males. In the cerebral cortex, all neurosteroidogenic molecules analysed showed similar mRNA levels in males and females. Gonadectomy increased the expression of 5α‐R in the brain of both sexes, although it affected the brain expression of St AR , TSPO , P450scc and 3α‐ HSOR in females only and with regional differences. Although protein levels were not investigated in the present study, our findings indicate that mRNA expression of steroidogenic molecules in the adult rat brain is sexually dimorphic and presents regional specificity, both under basal conditions and after gonadectomy. Thus, local steroidogenesis may contribute to the reported sex and regional differences in the levels of brain neuroactive steroids and may be involved in the generation of sex differences in the adult brain function.
机译:摘要大脑是类固醇形成组织。它表达了涉及神经活性类固醇的合成和代谢的关键分子,例如类固醇急性调节蛋白(ST AR),易蚀剂蛋白18?KDA(TSPO),细胞色素P450胆固醇侧链裂解酶(P450SCC),3β-羟类脱氢酶(3β-HSD),5α-还原酶(5α-R)和3α-羟类氧化氧化酶(3α-HSOR)。以前的研究表明,基础条件下的男性和雌性大鼠和淋病术后脑类固醇的水平不同。在本研究中,我们评估了脑皮质和促进的GONADECTOMINGED成年雄性和雌性大鼠的脑皮质和小脑中关键神经素过源性分子的基因表达。在小脑中,女性的ST和3α-Hsor的基础mRNA水平明显高于男性。相比之下,雄性的TSPO和5α-R的mRNA水平显着高。在脑皮质中,分析的所有神经体素化分子在麦利和女性中显示出类似的mRNA水平。姜线切除术增加了两性的大脑中5α-R的表达,尽管它影响了ST AR,TSPO,P450SCC和3α-HSOR的脑表达仅在女性中并具有区域差异。虽然在本研究中未研究蛋白质水平,但我们的研究结果表明,成年大鼠脑中的类体分子的mRNA表达是性二态性的性,并且在基础条件和促进术后呈现区域特异性。因此,局部甾体发生可能导致脑神经活性类固醇水平的报告的性和区域差异,并且可能参与成年脑功能的性别差异。

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