Department of Population Health and Reproduction, School of Veterinary Medicine, University of California Davis, Davis, California 95616, USA.
Reproduction. 2011 Jun;141(6):841-8. doi: 10.1530/REP-10-0499. Epub 2011 Feb 7.
In the mammalian testis, Leydig cells are primarily responsible for steroidogenesis. In adult stallions, the major endocrine products of Leydig cells include testosterone and estrogens. 3β-hydroxysteroid dehydrogenase/Δ(5)-Δ(4)-isomerase (3βHSD) and 17α-hydroxylase/17,20-lyase (P450c17) are two key steroidogenic enzymes that regulate testosterone synthesis. Androgens produced by P450c17 serve as substrate for estrogen synthesis. The aim of this study was to investigate localization of the steroidogenic enzymes P450c17, 3βHSD, and P450arom and to determine changes in expression during development in the prepubertal, postpubertal, and adult equine testis based upon immunohistochemistry (IHC) and real-time quantitative PCR. Based on IHC, 3βHSD immunolabeling was observed within seminiferous tubules of prepubertal testes and decreased after puberty. On the other hand, immunolabeling of 3βHSD was very weak or absent in immature Leydig cells of prepubertal testes and increased after puberty. HSD3B1 (3βHSD gene) mRNA expression was higher in adult testes compared with prepubertal (P=0.0001) and postpubertal testes (P=0.0041). P450c17 immunolabeling was observed in small clusters of immature Leydig cells in prepubertal testes and increased after puberty. CYP17 (P450c17 gene) mRNA expression was higher in adult testes compared with prepubertal (P=0.030) and postpubertal testes (P=0.0318). A weak P450arom immunolabel was observed in immature Leydig cells of prepubertal testes and increased after puberty. Similarly, CYP19 (P450arom gene) mRNA expression was higher in adult testes compared with prepubertal (P=0.0001) and postpubertal (P=0.0001) testes. In conclusion, Leydig cells are the primary cell type responsible for androgen and estrogen production in the equine testis.
在哺乳动物的睾丸中,Leydig 细胞主要负责类固醇的生成。在成年公马中,Leydig 细胞的主要内分泌产物包括睾酮和雌激素。3β-羟甾脱氢酶/Δ(5)-Δ(4)-异构酶(3βHSD)和 17α-羟化酶/17,20-裂解酶(P450c17)是两种调节睾酮合成的关键类固醇生成酶。P450c17 产生的雄激素可作为雌激素合成的底物。本研究旨在通过免疫组织化学(IHC)和实时定量 PCR 研究类固醇生成酶 P450c17、3βHSD 和 P450arom 的定位,并确定在未成熟、成熟和成年马睾丸发育过程中的表达变化。根据 IHC,3βHSD 免疫标记在未成熟睾丸的生精小管中观察到,并在青春期后减少。另一方面,3βHSD 的免疫标记在未成熟睾丸的幼稚 Leydig 细胞中非常弱或不存在,并在青春期后增加。与未成熟(P=0.0001)和青春期后(P=0.0041)睾丸相比,HSD3B1(3βHSD 基因)mRNA 表达在成年睾丸中更高。在未成熟睾丸中,P450c17 免疫标记在幼稚 Leydig 细胞的小簇中观察到,并在青春期后增加。与未成熟(P=0.030)和青春期后(P=0.0318)睾丸相比,CYP17(P450c17 基因)mRNA 表达在成年睾丸中更高。在未成熟睾丸的幼稚 Leydig 细胞中观察到弱的 P450arom 免疫标记,并在青春期后增加。同样,与未成熟(P=0.0001)和青春期后(P=0.0001)睾丸相比,CYP19(P450arom 基因)mRNA 表达在成年睾丸中更高。综上所述,Leydig 细胞是马睾丸中产生雄激素和雌激素的主要细胞类型。