Time-course effects of human recombinant luteinizing hormone on porcine Leydig cell specific differentiated functions

被引:33
作者
Lejeune, H [1 ]
Sanchez, P
Chuzel, F
Langlois, D
Saez, JM
机构
[1] Hop Debrousse, INRA, INSERM, U418, F-69322 Lyon, France
[2] Hop Debrousse, IFR Endocrinol, F-69322 Lyon, France
[3] Hop Antiquaille, Hospices Civils Lyon, Clin Endocrinol, F-69321 Lyon, France
关键词
recombinant LH; Leydig cells; cAMP production;
D O I
10.1016/S0303-7207(98)00153-1
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Since recombinant hormones are considered as safer and more reliable in their bioactivity than extractive hormones, the recently available human recombinant luteinizing hormone (r-hLH), will probably replace hCG in the near future, for clinical purposes. This prompted us to investigate whether or not, and by which mechanisms, r-hLH can induce a desensitization of signal transduction and/or an up-regulation of steroidogenic capacity in Leydig cells. The effects of a 30 min to 24 h exposure to r-hLH (10(-9) M) on the differentiated functions of cultured immature porcine Leydig cells were studied by measuring the following parameters: LH/hCG receptor number and mRNA, hCG-, cholera toxin- and forskolin-induced cAMP production, G protein alpha(s) subunit content of the membrane, hCG-, cholera toxin-, forskolin-, 8Br-cAMP-, 22R-OH-cholesterol-, progesterone-, 17OH-progesterone-, DHEA-, Delta 4-androstenedione-induced testosterone secretion and StAR, 3 beta-HSD, cytochrome P-450scc and p450c17 mRNAs. hCG binding sites and LH/hCG receptor mRNA were slowly down regulated by r-hLH, reaching 47 +/- 1 and 18 +/- 7% of control at 24 h, respectively. Down-regulation of both hCG- and cholera toxin-induced cAMP production occurred earlier and was more marked, and at 24 h represented only 2.7 +/- 0.5 and 12.5 +/- 3.6% of control. Due to the synergistic effect of r-hLH and forskolin on cAMP production, the forskolin-induced cAMP was higher in r-hLH treated than in control cells, but this response also declines with time and was, at 24 h, only 32% of that observed at 30 min. This decreased cAMP production was associated with a less marked decline in the amount of membrane content of G alpha(s) protein. The testosterone production in response to hCG, cholera toxin, forskolin and 8Br-cAMP declined to reach a nadir at 6 h but increased thereafter and at 24 h was significantly higher than in control cells. In contrast, the conversion of several precursors into testosterone remained stable or increased slightly during the first hours of r-hLH treatment and significantly increased at 24 h and this was associated with an increase of StAR, 3 beta-HSD, P-450scc and P-450c17 mRNAs. Taken together, the present results indicate that, despite the marked down-regulation of transmembrane signaling, r-hLH increased the steroidogenic capacity of Leydig cells by increasing the expression of several genes encoding the proteins involved in testosterone synthesis. (C) 1998 Elsevier Science Ireland Ltd. All rights reserved.
引用
收藏
页码:59 / 69
页数:11
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