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出生后发育过程中大鼠睾丸中的5α-还原酶同工酶1和2

5alpha-reductase isoenzymes 1 and 2 in the rat testis during postnatal development.

作者信息

Killian Jessica, Pratis Kyriakos, Clifton Rebecca J, Stanton Peter G, Robertson David M, O'Donnell Liza

机构信息

Prince Henry's Institute of Medical Research, Clayton, Victoria 3168, Australia.

出版信息

Biol Reprod. 2003 May;68(5):1711-8. doi: 10.1095/biolreprod.102.009142. Epub 2002 Dec 11.

Abstract

The pubertal initiation of spermatogenesis is reliant on androgens, and during this time, 5alpha-reduced androgens such as dihydrotestosterone (DHT) are the predominant androgens in the testis. Two 5alpha-reductase (5alphaR) isoenzymes (5alphaR1 and 5alphaR2) have been identified, which catalyze the conversion of testosterone to the more potent androgen DHT. The present study aimed to investigate the developmental pattern of 5alphaR isoenzymes and their relationship to the production of 5alpha-reduced androgens in the postnatal rat testis. Both 5alphaR1 and 5alphaR2 isoenzyme mRNAs were measured by real-time polymerase chain reaction, isoenzyme activity levels by specific assays, and testicular androgens by radioimmunoassay after high-performance liquid chromatographic separation. Both 5alphaR1 and 5alphaR2 mRNAs and activity levels were low in the 10-day-old (prepubertal) testis, peaked between Days 20 and 40 during puberty, and then declined to low levels at 60-160 days of age. The developmental pattern of both 5alphaR isoenzyme activity levels was mirrored by the testicular production of 5alpha-reduced metabolites. Although 5alphaR1 was greater than 5alphaR2 at all ages, it is likely, given the substrate preferences of the two, that both isoenzymes contribute to the pubertal peak of 5alpha-reduced androgen biosynthesis. The peak in 5alphaR isoenzymes and 5alpha-reduced metabolite production coincided with the first wave of spermatogenesis in the rat, suggesting a role for 5alpha-reduced metabolites in the initiation of spermatogenesis. This was explored by acute administration of a 5alphaR inhibitor (L685,273) to immature rats. The L685,273 markedly suppressed testicular 5alphaR activity during puberty by 75%-86%. However, a marked increase was observed in testicular testosterone levels (in the absence of changes in LH), and no decrease was observed in the absolute levels of 5alpha-reduced metabolites. Therefore, whether the formation of DHT in the presence of low testosterone levels in the pubertal testis is required for the initiation of spermatogenesis cannot be tested using 5alphaR inhibitors. We conclude that both 5alphaR1 and 5alphaR2 isoenzymes are involved in the peak of 5alpha-reduced androgen biosynthesis in the testis during the pubertal initiation of spermatogenesis.

摘要

精子发生的青春期启动依赖于雄激素,在此期间,5α-还原雄激素如双氢睾酮(DHT)是睾丸中的主要雄激素。已鉴定出两种5α-还原酶(5αR)同工酶(5αR1和5αR2),它们催化睾酮转化为更强效的雄激素DHT。本研究旨在调查出生后大鼠睾丸中5αR同工酶的发育模式及其与5α-还原雄激素产生的关系。通过实时聚合酶链反应测量5αR1和5αR2同工酶的mRNA,通过特异性测定法测量同工酶活性水平,并在高效液相色谱分离后通过放射免疫测定法测量睾丸雄激素。在10日龄(青春期前)睾丸中,5αR1和5αR2的mRNA及活性水平均较低,在青春期的第20至40天达到峰值,然后在60至160日龄时降至低水平。5αR同工酶活性水平的发育模式与睾丸中5α-还原代谢产物的产生情况一致。尽管在所有年龄段5αR1均高于5αR2,但鉴于两者的底物偏好,两种同工酶可能都对5α-还原雄激素生物合成的青春期峰值有贡献。5αR同工酶和5α-还原代谢产物产生的峰值与大鼠精子发生的第一波相吻合,表明5α-还原代谢产物在精子发生启动中起作用。通过对未成熟大鼠急性给予5αR抑制剂(L685,273)对此进行了探究。L685,273在青春期期间显著抑制睾丸5αR活性达75% - 86%。然而,观察到睾丸睾酮水平显著升高(促黄体生成素无变化),且5α-还原代谢产物的绝对水平未降低。因此,使用5αR抑制剂无法检验青春期睾丸中在低睾酮水平下DHT的形成是否是精子发生启动所必需的。我们得出结论,在精子发生的青春期启动过程中,5αR1和5αR2同工酶均参与睾丸中5α-还原雄激素生物合成的峰值过程。

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