Rajakumar Anbazhagan, Senthilkumaran Balasubramanian
Laboratory of Molecular Endocrinology and Reproductive Biology, Department of Animal Biology, School of Life Sciences, University of Hyderabad, P.O. Central University, Hyderabad 500046, India.
Laboratory of Molecular Endocrinology and Reproductive Biology, Department of Animal Biology, School of Life Sciences, University of Hyderabad, P.O. Central University, Hyderabad 500046, India.
J Steroid Biochem Mol Biol. 2016 Apr;158:90-103. doi: 10.1016/j.jsbmb.2016.01.003. Epub 2016 Jan 6.
In fishes, the expression of steroidogenic enzyme genes and their related transcription factors (TFs) are critical for the regulation of steroidogenesis and gonadal development. 11-KT is the potent androgen and hence, 11β-hsd, enzyme involved in 11-KT production is important. Regulation of 11β-hsd gene was never studied in any fishes. At first 11β-hsd was cloned and recombinant protein was tested for enzyme activity prior to expression and promoter motif analysis. Expression changes revealed stage- and sex-dependent increase in the ontogenic studies. Further, 11β-hsd expression was higher during spawning phase of reproductive cycle and was found to be gonadotropin inducible both in vivo and in vitro. ∼2kb of 5' upstream region of 11β-hsd, was cloned from catfish genomic DNA library and in silico promoter analysis revealed putative TF binding sites such as Sox3, Wt1, Pax2, Dmrt1 and Ad4BP/SF-1. Luciferase reporter assay using the sequential deletion constructs in human embryonic kidney and Chinese hamster ovary cells revealed considerable promoter activity of the constructs containing Sox3, but not with other motifs largely. Site-directed mutagenesis, Sox3 over expression, electrophoretic mobility shift and chromatin immunoprecipitation assays further substantiated the binding of Sox3 to its corresponding cis-acting element in the upstream promoter motif of 11β-hsd. This is the first report to show that Sox3 binds to the 11β-hsd gene promoter and transactivates to regulate male reproduction in a teleost.
在鱼类中,类固醇生成酶基因及其相关转录因子(TFs)的表达对于类固醇生成和性腺发育的调节至关重要。11-KT是强效雄激素,因此,参与11-KT生成的11β-羟类固醇脱氢酶(11β-hsd)很重要。此前从未在任何鱼类中研究过11β-hsd基因的调控。首先克隆了11β-hsd,并在进行表达和启动子基序分析之前对重组蛋白进行了酶活性测试。表达变化显示在个体发育研究中存在阶段和性别依赖性增加。此外,11β-hsd在生殖周期的产卵期表达较高,并且发现在体内和体外均可被促性腺激素诱导。从鲶鱼基因组DNA文库中克隆了11β-hsd约2kb的5'上游区域,通过计算机启动子分析揭示了推定的TF结合位点,如Sox3、Wt1、Pax2、Dmrt1和Ad4BP/SF-1。使用人胚肾细胞和中国仓鼠卵巢细胞中的连续缺失构建体进行的荧光素酶报告基因测定显示,含有Sox3的构建体具有相当大的启动子活性,但其他基序的构建体大多没有。定点诱变、Sox3过表达、电泳迁移率变动和染色质免疫沉淀测定进一步证实了Sox3与其在11β-hsd上游启动子基序中相应的顺式作用元件结合。这是第一份表明Sox3与11β-hsd基因启动子结合并反式激活以调节硬骨鱼雄性繁殖的报告。