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首页> 外文期刊>The biochemical journal >Effect of protein-synthesis inhibitors on testosterone production in rat testis interstitial tissue and Leydig-cell preparations
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Effect of protein-synthesis inhibitors on testosterone production in rat testis interstitial tissue and Leydig-cell preparations

机译:蛋白质合成抑制剂对大鼠睾丸间质组织和睾丸间质细胞制剂睾丸激素产生的影响

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pLuteinizing-hormone-stimulated testosterone biosynthesis was inhibited by cycloheximide during incubation of rat testis intersitial tissue in vitro and also by puromycin and cycloheximide during incubation of Leydig-cell preparations, but not by chloramphenicol. These results suggest that a protein regualtor(s) formed by cytoplasmic protein synthesis is involved in steroidogenesis in the rat testis. The specific effect of cycloheximide and puromycin on protein synthesis rather than on other non-specific processes is suggested by the inhibition of protein synthesis and steroidogenesis with different doses of the inhibitors and the lack of effect of cycloheximide on luteinizing-hormone-induced adenosine 3′:5′-cyclic monophosphate production. Stimulation of testosterone production by luteinizing hormone during superfusion of interstitial tissue was detectable within 10-20 min and reached a maximum of 120 min, and thereafter slowly decreased. Cycloheximide added at maximum steroid production caused a rapid decrease in testosterone synthesis which followed first-order kinetics (half-life 13 min), thus indicating that the protein regulator(s) has a short half-life. No effect of cycloheximide, puromycin or chloramphenicol on testosterone production in the absence of added luteinizing hormone was found, suggesting that the basal production of testosterone is independent of protein synthesis./p
机译:黄体激素刺激的睾丸激素的生物合成在体外培养大鼠睾丸间质的过程中被环己酰亚胺抑制,在Leydig细胞制剂的培养过程中嘌呤霉素和环己酰亚胺也被抑制,而氯霉素则不抑制。这些结果表明,由细胞质蛋白合成形成的蛋白调节剂参与了大鼠睾丸中的类固醇生成。通过用不同剂量的抑制剂抑制蛋白质合成和类固醇生成,以及环己酰亚胺对黄体激素诱导的腺苷3'缺乏作用,表明了环己酰亚胺和嘌呤霉素对蛋白质合成的特异性作用,而不是对其他非特异性过程的特异性作用。 :5'-环一磷酸酯的生产。在组织间融合期间,通过黄体化激素刺激睾丸激素的产生可在10-20分钟内检测到,最高可达到120分钟,然后缓慢下降。以最大的类固醇产量添加环己二酰亚胺会导致睾丸激素合成快速下降,这遵循一级动力学(半衰期13分钟),因此表明蛋白调节剂的半衰期很短。在没有添加黄体生成激素的情况下,未发现环己酰亚胺,嘌呤霉素或氯霉素对睾丸激素产生的影响,这表明睾丸激素的基础产生与蛋白质合成无关。

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