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[5-α还原酶:生理学与病理学]

[5-alpha-reductases: physiology and pathology].

作者信息

Mowszowicz I, Berthauit I, Mestayer C, Wright F, Kuttenn F, Mauvais-Jarvis P

机构信息

Laboratoire de Biochimie, Hôpital Necker, Paris.

出版信息

Ann Endocrinol (Paris). 1995;56(6):555-9.

PMID:8787343
Abstract

In most androgen target tissues, the first step of androgen action is the 5 alpha-reduction of testosterone to DHT which binds to the androgen receptor with an affinity 3 to 4 fold higher than testosterone. Two genes, encoding two isozymes of 5 alpha-reductase (5 alpha-R) have been cloned. The two isoforms, 5 alpha-R1 and 5 alpha-R 2 are located on chromosomes 5 and 2 respectively and differ in optimal pH, substrate and inhibitor affinities and tissue expression. 5 alpha-R 2 is responsible for sexual differentiation. It is the major form expressed in the prostate where it seems necessary for embryonic growth and development. 5 alpha-reductase deficiency results in androgen insensitivity due to abnormal 5 alpha-R 2. Affected patients are XY individuals with a very peculiar form of male pseudohermaphroditism: they have feminine genitalia at birth and masculinize at puberty. 29 mutations, spanning the whole coding portion of the gene, have been described; correlation between mutations and enzyme activity have led to the suggestion that both the N- and the C-terminal end of the gene are involved in substrate binding, whereas the cofactor binding-site is located in the C-terminus. In contrast to androgen insensitivity due to 5 alpha-reductase deficiency, increased 5 alpha-reductase activity can result in androgen hypersensitivity as described in idiopathic hirsutism or benign prostatic hyperplasia. In these case 5 alpha-R 1 could possibly be involved.

摘要

在大多数雄激素靶组织中,雄激素作用的第一步是睾酮5α-还原为双氢睾酮(DHT),DHT与雄激素受体的结合亲和力比睾酮高3至4倍。已克隆出编码5α-还原酶(5α-R)两种同工酶的两个基因。这两种同工型,即5α-R1和5α-R2分别位于5号和2号染色体上,在最适pH、底物和抑制剂亲和力以及组织表达方面存在差异。5α-R2负责性分化。它是前列腺中表达的主要形式,似乎对胚胎生长和发育是必需的。5α-还原酶缺乏症由于5α-R2异常而导致雄激素不敏感。受影响的患者为XY个体,具有一种非常特殊形式的男性假两性畸形:他们出生时具有女性生殖器,青春期时发生男性化。已描述了29种跨越该基因整个编码部分的突变;突变与酶活性之间的相关性表明,该基因的N端和C端均参与底物结合,而辅因子结合位点位于C端。与5α-还原酶缺乏导致的雄激素不敏感相反,5α-还原酶活性增加可导致雄激素超敏反应,如特发性多毛症或良性前列腺增生中所描述的那样。在这些情况下,5α-R1可能参与其中。

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