Yang Ling, Fox Sallie A, Kirby Jennifer L, Troan Brigid V, Hinton Barry T
Department of Cell Biology, University of Virginia Health System, Charlottesville, Virginia 22908, USA.
Biol Reprod. 2006 Apr;74(4):714-20. doi: 10.1095/biolreprod.105.044354. Epub 2006 Jan 4.
Several genes expressed in the initial segment of the epididymis depend on factors from the testis that reach the epididymis via the luminal system. These include gamma-glutamyl transpeptidase mRNA IV (Ggt_pr4), steroid 5 alpha reductase (Srd5a1), glutathione peroxidase 5 (Gpx5), and cystatin-related epididymal spermatogenic (Cst8) genes. Promoter analyses indicated that these genes contain several ETS DNA-binding sites. Members of the polyomavirus enhancer activator 3 (ETV4) family bind to ETS sites on the promoter of target genes to regulate transcription. In this study, the role of ETV4 family members (ETV4, ETV5, ETV1) in the transcription of initial segment specific genes was evaluated. All three ETV4 family mRNAs are expressed in the principal cells of the initial segment and depend upon the presence of testicular luminal fluid factors. ETV4 protein was localized to principal cell nuclei and displayed the highest expression in the most proximal region of the initial segment. In addition, ETV4 protein levels were diminished after loss of testicular luminal fluid factors. A dominant-negative construct of ETV5 was in vivo electroporated into the initial segment to determine if ETV4 family members can regulate the transcription of testicular luminal fluid factor-regulated genes. Quantitative PCR indicated that 1 day postelectroporation, all three ETV4 family member mRNAs were significantly decreased. In addition, Ggt_pr4, Srd5a1, and Gpx5 mRNA levels were also significantly decreased. The data suggest that ETV4 family members regulate their own expression, and that they regulate transcription of a subset of genes that are dependent upon testicular luminal fluid factors.
附睾起始段表达的几个基因依赖于来自睾丸的因子,这些因子通过管腔系统到达附睾。这些基因包括γ-谷氨酰转肽酶mRNA IV(Ggt_pr4)、类固醇5α还原酶(Srd5a1)、谷胱甘肽过氧化物酶5(Gpx5)和胱抑素相关附睾生精(Cst8)基因。启动子分析表明,这些基因含有几个ETS DNA结合位点。多瘤病毒增强子激活因子3(ETV4)家族成员与靶基因启动子上的ETS位点结合以调节转录。在本研究中,评估了ETV4家族成员(ETV4、ETV5、ETV1)在起始段特异性基因转录中的作用。所有三种ETV4家族mRNA均在起始段的主细胞中表达,并依赖于睾丸管腔液因子的存在。ETV4蛋白定位于主细胞核,并在起始段最近端区域显示出最高表达。此外,睾丸管腔液因子缺失后,ETV4蛋白水平降低。将ETV5的显性负性构建体体内电穿孔到起始段,以确定ETV4家族成员是否可以调节睾丸管腔液因子调节基因的转录。定量PCR表明,电穿孔后1天,所有三种ETV4家族成员mRNA均显著降低。此外,Ggt_pr4、Srd5a1和Gpx5 mRNA水平也显著降低。数据表明,ETV4家族成员调节自身表达,并调节依赖于睾丸管腔液因子的一部分基因的转录。