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与不稳定形式的5α-还原酶相关的遗传性男性假两性畸形。

Hereditary male pseudohermaphroditism associated with an unstable form of 5 alpha-reductase.

作者信息

Leshin M, Griffin J E, Wilson J D

出版信息

J Clin Invest. 1978 Sep;62(3):685-91. doi: 10.1172/JCI109176.

Abstract

The properties of 5alpha-reductase have been compared in genital skin fibroblasts cultured from five patients from three families (Los Angeles, Dallas, and Dominican Republic) in which hereditary male pseudohermaphroditism has been established to result from deficient conversion of testosterone to dihydrotestosterone. Despite the fact that 5alpha-reductase was immeasurable in a homogenate of epididymis removed from one of the Los Angeles patients, 5alpha-reductase activity was normal in intact fibroblasts and fibroblast extracts from both patients from the Los Angeles family. Although the apparent K(m) for testosterone was also near normal, the apparent K(m) for NADPH in these mutants is elevated some 40-fold above normal. Furthermore, the enzyme is not protected against denaturation at 45 degrees C by concentrations of NADPH that stabilize normal 5alpha-reductase, and in intact fibroblasts from these patients (but not from controls), enzyme activity decreases promptly when protein synthesis is inhibited. We conclude that the mutation in this family results in an unstable enzyme. In contrast 5alpha-reductase activity in fibroblast extracts from a patient from the Dominican Republic family is similar to that previously described in two members of the Dallas family, namely total enzyme activity is low at the optimal pH for the normal reaction, and the apparent K(m) for testosterone is some 20-fold higher than that of the controls. We conclude that the mutations in the Dallas and Dominican Republic families are similar and result in low activity of the enzyme as the result of a decreased affinity for testosterone.Thus, two distinct types of mutations can produce male pseudohermaphroditism due to deficient dihydrotestosterone formation.

摘要

对来自三个家族(洛杉矶、达拉斯和多米尼加共和国)的五名患者的生殖器皮肤成纤维细胞中5α-还原酶的特性进行了比较,在这些家族中,已确定遗传性男性假两性畸形是由睾酮向双氢睾酮转化不足所致。尽管从洛杉矶的一名患者切除的附睾匀浆中无法检测到5α-还原酶,但来自洛杉矶家族的两名患者的完整成纤维细胞和成纤维细胞提取物中的5α-还原酶活性正常。虽然睾酮的表观K(m)也接近正常,但这些突变体中NADPH的表观K(m)比正常水平升高了约40倍。此外,该酶在45℃下不受稳定正常5α-还原酶的NADPH浓度的保护以免于变性,并且在这些患者(而非对照)的完整成纤维细胞中,当蛋白质合成受到抑制时酶活性迅速降低。我们得出结论,这个家族中的突变导致了一种不稳定的酶。相比之下,来自多米尼加共和国家族的一名患者的成纤维细胞提取物中的5α-还原酶活性与之前在达拉斯家族的两名成员中描述的相似,即在正常反应的最佳pH下总酶活性较低,并且睾酮的表观K(m)比对照高约20倍。我们得出结论,达拉斯和多米尼加共和国家族中的突变相似,由于对睾酮的亲和力降低导致酶活性降低。因此,两种不同类型的突变可因双氢睾酮形成不足而导致男性假两性畸形。

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