Ukena K, Honda Y, Inai Y, Kohchi C, Lea R W, Tsutsui K
Laboratory of Brain Science, Faculty of Integrated Arts and Sciences, Hiroshima, University, Higashi-Hiroshima 739-8521, Japan.
Brain Res. 1999 Feb 13;818(2):536-42. doi: 10.1016/s0006-8993(98)01296-7.
Recently, we have demonstrated, using biochemical and immunochemical methods, that the quail brain possesses the cholesterol side-chain cleavage enzyme (cytochrome P450scc) and produces pregnenolone and its sulfate ester. To clarify progesterone biosynthesis in the avian brain, therefore, we examined the expression of messenger RNA (mRNA) encoding for the enzyme 3beta-hydroxysteroid dehydrogenase/Delta5-Delta4-isomerase (3beta-HSD) and its enzymatic activity using the quail. RT-PCR analysis together with Southern hybridization indicated the expression of 3beta-HSD mRNA in the brain of sexually mature birds but with no clear-cut sex difference. Employing biochemical techniques combined with HPLC analysis, the conversion of pregnenolone to progesterone was found in brain slices of mature males. Progesterone biosynthesis was increased in a time dependent manner and completely abolished by trilostane, a specific inhibitor of 3beta-HSD. The enzymatic activity of 3beta-HSD was greatest in the cerebrum and lowest in the mesencephalon. A specific RIA indicated that progesterone concentrations in the different brain regions closely followed the level of 3beta-HSD activity. High levels of progesterone concentration were observed in the diencephalon and cerebrum with lowest values in the mesencephalon. Progesterone levels in the brain regions were significantly higher than those in the plasma. These results suggest that the avian brain possesses not only cytochrome P450scc but also 3beta-HSD and produces progesterone. It is also indicated that progesterone biosynthesis in the avian brain may be region-dependent.
最近,我们运用生化和免疫化学方法证明,鹌鹑脑具有胆固醇侧链裂解酶(细胞色素P450scc),并能产生孕烯醇酮及其硫酸酯。因此,为了阐明鸟类脑中孕酮的生物合成过程,我们利用鹌鹑研究了编码3β-羟基类固醇脱氢酶/Δ5-Δ4-异构酶(3β-HSD)的信使核糖核酸(mRNA)的表达及其酶活性。逆转录聚合酶链反应(RT-PCR)分析以及Southern杂交表明,在性成熟鸟类的脑中存在3β-HSD mRNA的表达,但没有明显的性别差异。采用生化技术结合高效液相色谱(HPLC)分析发现,在成熟雄性鸟类的脑切片中,孕烯醇酮可转化为孕酮。孕酮的生物合成呈时间依赖性增加,并且被3β-HSD的特异性抑制剂曲洛司坦完全抑制。3β-HSD的酶活性在大脑中最高,在中脑最低。一种特异性放射免疫分析(RIA)表明,不同脑区的孕酮浓度与3β-HSD活性水平密切相关。在间脑和大脑中观察到高水平的孕酮浓度,而在中脑的值最低。脑区中的孕酮水平显著高于血浆中的孕酮水平。这些结果表明,鸟类脑不仅具有细胞色素P450scc,还具有3β-HSD,并能产生孕酮。这也表明鸟类脑中孕酮的生物合成可能具有区域依赖性。