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Comparison of androgen synthesis in human fetal testis and adrenal: 3β-hydroxysteroid dehydrogenase-isomerase and 17β-steroid dehydrogenase activities

机译:雄激素合成在人胎睾丸中的比较和肾上腺:3β-羟类脱氢酶 - 异构酶和17β - 类固醇脱氢酶活性

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摘要

To assess comparative 3[beta]-hydroxysteroid dehydrogenase-isomerase and 17[beta]-steroid dehydrogenase activities in human fetal testis and adrenal, equal weights of adrenal and testicular tissue from the same fetuses were incubated with dehydroepiandrosterone or pregnenolone, under identical conditions. Tissues from five fetuses were investigated. The following products were isolated and quantitated: dehydroepiandrosterone, androstenediol, androstenedione and testosterone. The 3[beta]-hydroxysteroid dehydrogenase-isomerase activity, expressed as pmoles found in androstenedione plus testosterone per mg protein incubated, was 3[middle dot]5-138 times higher in testicular than in adrenal tissue. 17[beta]-Steroid dehydrogenase activity expressed as pmoles found in testosterone plus androstenediol per mg protein incubated was 73-313 in testicular tissue compared to 0-2.64 in adrenal tissue. When the same activities were expressed in terms of activity per total adrenal and testicular tissue per fetus, the 17[beta]-steroid dehydrogenase activity was still considerably higher in testes than in adrenals, while the 3[beta]-hydroxysteroid dehydrogenase-isomerase activity was higher in the testes of the three smaller fetuses investigated. These data provide additional evidence that the human fetal testis is geared to the formation of testosterone which is essential for genital development in the male fetus.
机译:为了评估比较3-β羟基类固醇脱氢酶异构酶和17-β在人胎儿睾丸和来自同一胎儿肾上腺和睾丸组织的肾上腺,相等的权重-steroid脱氢酶活性孵育与脱氢孕烯醇酮或,相同的条件下。研究了来自五个胎儿的组织。将下列产物分离和定量:DehydroepioLone,Androsteniol,androstentione和睾酮。 3β-羟基雌甾醇脱氢酶 - 异构酶活性表达为在孵育的每毫克蛋白质的Androstentione加上睾酮中发现的pmoles,睾丸睾丸的3次比在肾上腺组织中高出5-138倍。 17β-甾醇脱氢酶活性表达为在睾酮加和rosteniol中发现的pmoles,每mg蛋白质孵育为73-313,而肾上腺组织中的0-2.64则为0-2.64。当在每只胎儿的每种肾上腺和睾丸组织的活动方面表达相同的活动时,睾丸仍然比在肾上腺中仍然高出大幅高,而3β-羟基甾醇脱氢酶 - 异构酶活性在研究的三个较小的胎儿的睾丸中较高。这些数据提供了额外的证据,即人胎睾丸旨在形成睾酮,这对于雄性胎儿的生殖器发育至关重要。

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