Lin T
Life Sci. 1983 Dec 19;33(25):2465-71. doi: 10.1016/0024-3205(83)90153-4.
Forskolin has a potent stimulatory effect on both cyclic AMP and testosterone formation by purified Leydig cells. Forskolin also markedly enhanced hCG-induced cyclic AMP formation, but maximal testosterone production remained unaltered. Cyclic AMP and testosterone responses of desensitized Leydig cells to in vitro hCG stimulation were completely lost. Cholera toxin-induced cyclic AMP formation was also reduced. However, forskolin was able to stimulate a 3.4-fold increment in cyclic AMP formation and potentiate hCG-induced cyclic AMP response by desensitized Leydig cells. The absolute cyclic AMP levels were significantly lower than in normal control cells. These results suggest that the catalytic unit remains intact in desensitized Leydig cells and the coupling between N-protein and catalytic unit is impaired. The N-protein is required for full expression of maximal response of Leydig cells to forskolin.
福司可林对纯化的睾丸间质细胞中环磷酸腺苷(cAMP)的形成和睾酮的生成具有强大的刺激作用。福司可林还显著增强了人绒毛膜促性腺激素(hCG)诱导的cAMP形成,但最大睾酮产量保持不变。脱敏的睾丸间质细胞对体外hCG刺激的cAMP和睾酮反应完全丧失。霍乱毒素诱导的cAMP形成也减少。然而,福司可林能够刺激脱敏的睾丸间质细胞中cAMP形成增加3.4倍,并增强hCG诱导的cAMP反应。绝对cAMP水平明显低于正常对照细胞。这些结果表明,脱敏的睾丸间质细胞中催化单位保持完整,而N蛋白与催化单位之间的偶联受损。N蛋白是睾丸间质细胞对福司可林最大反应充分表达所必需的。