Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Fishery College, Huazhong Agricultural University, Wuhan 430070, China.
Int J Mol Sci. 2021 Apr 26;22(9):4505. doi: 10.3390/ijms22094505.
The steroid hormones are required for gonadal development in fish. The present study was undertaken to characterize the cDNA and promoter sequences of TSPO and SMAD4 genes in yellow catfish , explored the mRNA tissue expression and deciphered their promoter regions. Yellow catfish TSPO and SMAD4 shared the similar domains to the corresponding genes from other vertebrates. The TSPO and SMAD4 mRNAs were widely expressed in the detected tissues, but at different levels. Several transcription factors were predicted, such as Sp, GATA, AP1, SOX1, SRY, STAT, HNF4α, PPARγ, Pu.1 and FOXL2. PPARγ overexpression increased but STAT3 overexpression reduced TSPO promoter activity, and FOXL2 overexpression inhibited the promoter activity of TSPO and SMAD4. The site mutation and EMSA analysis indicated that TSPO promoter possessed STAT3 and FOXL2 sites. Overall, our provided the novel understanding into the transcriptionally regulatory mechanisms of TSPO and SMAD4 in fish.
甾体激素是鱼类性腺发育所必需的。本研究旨在对黄颡鱼 TSPO 和 SMAD4 基因的 cDNA 和启动子序列进行特征描述,探讨其 mRNA 组织表达,并对其启动子区域进行解码。黄颡鱼 TSPO 和 SMAD4 与其他脊椎动物的相应基因具有相似的结构域。TSPO 和 SMAD4 mRNA 在检测到的组织中广泛表达,但水平不同。预测了几种转录因子,如 Sp、GATA、AP1、SOX1、SRY、STAT、HNF4α、PPARγ、Pu.1 和 FOXL2。PPARγ 的过表达增加了 TSPO 启动子的活性,但 STAT3 的过表达降低了 TSPO 启动子的活性,FOXL2 的过表达抑制了 TSPO 和 SMAD4 启动子的活性。位点突变和 EMSA 分析表明,TSPO 启动子具有 STAT3 和 FOXL2 位点。总的来说,我们为鱼类 TSPO 和 SMAD4 的转录调控机制提供了新的认识。