Department of Pharmaceutical Sciences, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.
J Biol Chem. 2012 Apr 27;287(18):14456-66. doi: 10.1074/jbc.M111.319681. Epub 2012 Feb 28.
The physiological role of multidrug resistance protein 4 (Mrp4, Abcc4) in the testes is unknown. We found that Mrp4 is expressed primarily in mouse and human Leydig cells; however, there is no current evidence that Mrp4 regulates testosterone production. We investigated its role in Leydig cells, where testosterone production is regulated by cAMP, an intracellular messenger formed when the luteinizing hormone (LH) receptor is activated. Because Mrp4 regulates cAMP, we compared testosterone levels in Mrp4(-/-) and Mrp4(+/+) mice. Young Mrp4(-/-) mice had significantly impaired gametogenesis, reduced testicular testosterone, and disruption of Leydig cell cAMP homeostasis. Both young and adult mice had impaired testosterone production. In Mrp4(-/-) primary Leydig cells treated with LH, intracellular cAMP production was impaired and cAMP-response element-binding protein (CREB) phosphorylation was strongly attenuated. Notably, expression of CREB target genes that regulate testosterone biosynthesis was reduced in Mrp4(-/-) Leydig cells in vivo. Therefore, Mrp4 is required for normal Leydig cell testosterone production. However, adult Mrp4(-/-) mice are fertile, with a normal circulating testosterone concentration. The difference is that in 3-week-old Mrp4(-/-) mice, disruption of gonadal testosterone production up-regulates hepatic Cyp2b10, a known testosterone-metabolizing enzyme. Therefore, defective testicular testosterone production de-regulates hepatic Cyp-mediated testosterone metabolism to disrupt gametogenesis. These findings have important implications for understanding the side effects of therapeutics that disrupt Mrp4 function and are reported to alter androgen production.
多药耐药相关蛋白 4(Mrp4,Abcc4)在睾丸中的生理作用尚不清楚。我们发现 Mrp4 主要在小鼠和人睾丸间质细胞中表达;然而,目前尚无证据表明 Mrp4 调节睾酮的产生。我们研究了它在睾丸间质细胞中的作用,在那里,睾酮的产生受细胞内信使 cAMP 调节,cAMP 是黄体生成素(LH)受体被激活时形成的。由于 Mrp4 调节 cAMP,我们比较了 Mrp4(-/-)和 Mrp4(+/+)小鼠的睾酮水平。年轻的 Mrp4(-/-)小鼠的配子发生严重受损,睾丸睾酮减少,睾丸间质细胞 cAMP 稳态失调。年轻和成年小鼠的睾酮产生都受损。在 LH 处理的 Mrp4(-/-)原代睾丸间质细胞中,细胞内 cAMP 的产生受损,cAMP 反应元件结合蛋白(CREB)磷酸化明显减弱。值得注意的是,体内 Mrp4(-/-)睾丸间质细胞中调节睾酮生物合成的 CREB 靶基因的表达减少。因此,Mrp4 是正常睾丸间质细胞睾酮产生所必需的。然而,成年 Mrp4(-/-)小鼠具有正常的生育能力和循环睾酮浓度。区别在于,在 3 周龄的 Mrp4(-/-)小鼠中,破坏性腺睾酮的产生上调了肝 Cyp2b10,一种已知的睾酮代谢酶。因此,睾丸睾酮产生的缺陷会破坏肝 Cyp 介导的睾酮代谢,从而破坏配子发生。这些发现对于理解扰乱 Mrp4 功能的治疗药物的副作用具有重要意义,这些药物被报道会改变雄激素的产生。