Xing W, Sairam M R
Molecular Reproduction Research Laboratory, Clinical Research Institute of Montréal, Montréal, Québec, H2W 1R7, Canada.
Biol Reprod. 2001 Oct;65(4):1142-9. doi: 10.1095/biolreprod65.4.1142.
Tissue-specific and stage-specific expression of follicle-stimulating hormone receptor (FSH-R) in granulosa and Sertoli cells is required for normal development of ovarian follicles and germ cells. However, little is known of the transcription factors that regulate the FSH-R gene and its promoter. Using an ovine FSH-R promoter as a model system, we have identified a second DNase I footprinting 2 (FP2) region from -46 to -67 of the strongest ovine FSH-R promoter (-200 to +163) relative to the transcription start site. Electrophoretic mobility shift assay with a 22-base pair DNA probe (-46 to -67) and nuclear extracts from Sertoli (15P1) and granulosa (JC-410) cell lines demonstrated a sequence-specific DNA-protein complex. Further Southwestern and UV cross-linking analyses detected three predominant proteins of molecular weights 87, 60, and 50 kDa present in both Sertoli and granulosa cells bound to a 32P-labeled DNA probe as a complex. Gel competition experiments with DNA probes containing known Krupple-like factor binding sites revealed that the testis-specific zinc finger protein, ZNF202-like factor, Ras-responsive element binding protein-like factor, or both, may be among the potential candidate regulators. Mutation within the CACC box of the promoter abolished Krupple-like factor binding and significantly diminished promoter activity in both gonadal cells. These data suggest that Krupple-like transcription factors may play a role in the regulation of ovine FSH-R expression.
卵泡刺激素受体(FSH-R)在颗粒细胞和支持细胞中的组织特异性和阶段特异性表达是卵泡和生殖细胞正常发育所必需的。然而,对于调节FSH-R基因及其启动子的转录因子却知之甚少。我们以绵羊FSH-R启动子作为模型系统,相对于转录起始位点,从最强的绵羊FSH-R启动子(-200至+163)的-46至-67区域鉴定出第二个DNA酶I足迹2(FP2)区域。用一个22碱基对的DNA探针(-46至-67)以及支持细胞系(15P1)和颗粒细胞系(JC-410)的核提取物进行电泳迁移率变动分析,结果显示存在一种序列特异性的DNA-蛋白质复合物。进一步的蛋白质免疫印迹和紫外线交联分析检测到,在支持细胞和颗粒细胞中均存在三种主要蛋白质,分子量分别为87、60和50 kDa,它们与32P标记的DNA探针结合形成复合物。用含有已知Krupple样因子结合位点的DNA探针进行凝胶竞争实验表明,睾丸特异性锌指蛋白、ZNF202样因子、Ras反应元件结合蛋白样因子或两者可能是潜在的候选调节因子。启动子CACC框内的突变消除了Krupple样因子的结合,并显著降低了两个性腺细胞中的启动子活性。这些数据表明,Krupple样转录因子可能在绵羊FSH-R表达的调节中发挥作用。