Melcangi R C, Celotti F, Castano P, Martini L
Department of Endocrinology, University of Milan, Italy.
Endocrinology. 1993 Mar;132(3):1252-9. doi: 10.1210/endo.132.3.8440186.
The activities of the 5 alpha-reductase [the enzyme that converts testosterone into dihydrotestosterone (DHT)] and 3 alpha-hydroxysteroid dehydrogenase [the enzyme that converts DHT into 5 alpha-androstan-3 alpha, 17 beta-diol (3 alpha-diol)] have been evaluated in primary cultures of neurons, oligodendrocytes, and type 1 and 2 astrocytes obtained from fetal or neonatal rat brain. All cultures were used on the fifth day. The formation of DHT and 3 alpha-diol was evaluated by incubating the different cultures with [14C]testosterone or [14C]DHT as substrates. The results obtained indicate that the formation of DHT takes place preferentially in neurons; however, type 2 astrocytes and oligodendrocytes also possess considerable 5 alpha-reductase activity, while type 1 astrocytes show a much lower enzymatic activity. A completely different localization was observed for 3 alpha-hydroxysteroid dehydrogenase. The formation of 3 alpha-diol appears to be mainly, if not exclusively, present in type 1 astrocytes. 3 alpha-Diol is formed in very low yields by neurons, type 2 astrocytes and oligodendrocytes. The compartmentalization of two strictly correlated enzymes (5 alpha-reductase and 3 alpha-hydroxysteroid dehydrogenase) in separate central nervous system cell populations suggests the simultaneous participation of neurons and glial cells in the 5 alpha-reductive metabolism of testosterone and possibly other hormonal steroids (e.g. progesterone, corticoids, etc.).
已对从胎鼠或新生鼠脑获取的神经元、少突胶质细胞以及1型和2型星形胶质细胞的原代培养物中5α-还原酶(将睾酮转化为二氢睾酮[DHT]的酶)和3α-羟基类固醇脱氢酶(将DHT转化为5α-雄烷-3α,17β-二醇[3α-二醇]的酶)的活性进行了评估。所有培养物均在第5天使用。通过用[14C]睾酮或[14C]DHT作为底物孵育不同培养物来评估DHT和3α-二醇的形成。所得结果表明,DHT的形成优先发生在神经元中;然而,2型星形胶质细胞和少突胶质细胞也具有相当高的5α-还原酶活性,而1型星形胶质细胞的酶活性则低得多。对于3α-羟基类固醇脱氢酶,观察到了完全不同的定位。3α-二醇的形成似乎主要(如果不是唯一的话)存在于1型星形胶质细胞中。神经元、2型星形胶质细胞和少突胶质细胞形成3α-二醇的产量非常低。两种紧密相关的酶(5α-还原酶和3α-羟基类固醇脱氢酶)在不同的中枢神经系统细胞群体中的区室化表明,神经元和神经胶质细胞同时参与了睾酮以及可能其他激素类固醇(如孕酮、皮质类固醇等)的5α-还原代谢。