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促性腺激素调节的睾丸 RNA 解旋酶(GRTH/DDX25)基因:转基因小鼠睾丸中雄激素的细胞特异性表达和转录调控。

Gonadotropin-regulated testicular RNA helicase (GRTH/DDX25) gene: cell-specific expression and transcriptional regulation by androgen in transgenic mouse testis.

机构信息

Section on Molecular Endocrinology, Program on Developmental Endocrinology and Genetics, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892-4510, USA.

出版信息

J Cell Biochem. 2010 Apr 15;109(6):1142-7. doi: 10.1002/jcb.22493.

Abstract

Gonadotropin-regulated testicular RNA helicase is a multifunctional enzyme present in both Leydig and germ cells that is essential for the progress of spermatogenesis. GRTH gene expression is transcriptionally upregulated by human chorionic gonadotropin (hCG) via second messenger (cAMP) and androgen in Leydig cells. The regulatory region(s) in the GRTH gene that is/are required for its cell-specific expression in the testis and hCG/androgen dependent expression were investigated in transgenic mice carrying sequential deletions of 5' flanking sequences of the GRTH gene. GFP-reporter gene expression directed by the GRTH 5' flanking sequences extending to -3.6 kb was specifically located in Leydig cells and the 205 bp minimal promoter domain was sufficient for this cell-specific expression. The 1 kb (5' to the ATG codon) transgene-directed expression was markedly increased by in vivo hCG treatment. Administration of the androgen receptor inhibitor Flutamide blocked the basal and hCG stimulated GFP expression in Leydig cells. We conclude that the expression of GRTH in testicular cells is differentially regulated by its 5' flanking sequence and that the 1 kb fragment of GRTH gene contains sequences for androgen regulation of its expression in Leydig cells.

摘要

促性腺激素调节的睾丸 RNA 解旋酶是一种多功能酶,存在于间质细胞和生殖细胞中,对精子发生的进展至关重要。GRTH 基因的表达通过第二信使(cAMP)和间质细胞中的雄激素转录上调。通过携带 GRTH 基因 5'侧翼序列连续缺失的转基因小鼠研究了其在睾丸中细胞特异性表达和 hCG/雄激素依赖性表达所需的 GRTH 基因的调节区(s)。由 GRTH 5'侧翼序列延伸至-3.6 kb 指导的 GFP 报告基因表达特异性定位于间质细胞中,205 bp 的最小启动子结构域足以实现这种细胞特异性表达。1 kb(起始密码子 ATG 前)转基因指导的表达在体内 hCG 处理后显著增加。雄激素受体抑制剂氟他胺的给药阻断了间质细胞中 GFP 的基础表达和 hCG 刺激的 GFP 表达。我们得出结论,睾丸细胞中 GRTH 的表达受其 5'侧翼序列的差异调节,GRTH 基因的 1 kb 片段包含雄激素调节其在间质细胞中表达的序列。

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