Sewer Marion B, Nguyen Viet Q, Huang Ching-Jung, Tucker Philip W, Kagawa Norio, Waterman Michael R
Department of Biochemistry and Center in Toxicology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146, USA.
Endocrinology. 2002 Apr;143(4):1280-90. doi: 10.1210/endo.143.4.8748.
The first 57 bp upstream of the transcription initiation site of the human CYP17 (hCYP17) gene are essential for both basal and cAMP-dependent transcription. EMSA carried out by incubating H295R adrenocortical cell nuclear extracts with radiolabeled -57/-38 probe from the hCYP17 promoter showed the formation of three DNA-protein complexes. The fastest complex contained steroidogenic factor (SF-1) and p54(nrb)/NonO, the intermediate complex contained p54(nrb)/NonO and polypyrimidine tract-binding protein-associated splicing factor (PSF), and the slowest complex contained an SF-1/PSF/p54(nrb)/NonO complex. (Bu)(2)cAMP treatment resulted in a cAMP-inducible increase in the binding intensity of only the upper complex and also activated hCYP17 gene transcription. SF-1 coimmunoprecipitated with p54(nrb)/NonO, indicating direct interaction between these proteins. Functional assays revealed that PSF represses basal transcription. Further, the repression of hCYP17 promoter-reporter construct luciferase activity resulted from PSF interacting with the corepressor mSin3A. Trichostatin A attenuated the inhibition of basal transcription, suggesting that a histone deacetylase interacts with the SF-1/PSF/p54(nrb)/NonO/mSin3A complex. Our studies lend support to the idea that the balance between transcriptional activation and repression is essential in the control of adrenocortical steroid hormone biosynthesis.
人类CYP17(hCYP17)基因转录起始位点上游的前57个碱基对对于基础转录和cAMP依赖的转录均至关重要。通过将H295R肾上腺皮质细胞核提取物与来自hCYP17启动子的放射性标记的-57 / -38探针孵育进行的电泳迁移率变动分析(EMSA)显示形成了三种DNA-蛋白质复合物。最快的复合物包含类固醇生成因子(SF-1)和p54(nrb)/ NonO,中间复合物包含p54(nrb)/ NonO和多嘧啶序列结合蛋白相关剪接因子(PSF),最慢的复合物包含SF-1 / PSF / p54(nrb)/ NonO复合物。(Bu)2cAMP处理仅导致上部复合物的结合强度出现cAMP诱导的增加,并且还激活了hCYP17基因转录。SF-1与p54(nrb)/ NonO共免疫沉淀,表明这些蛋白质之间存在直接相互作用。功能分析表明PSF抑制基础转录。此外,hCYP17启动子-报告基因构建体荧光素酶活性的抑制是由于PSF与共抑制因子mSin3A相互作用所致。曲古抑菌素A减弱了对基础转录的抑制,表明组蛋白脱乙酰酶与SF-1 / PSF / p54(nrb)/ NonO / mSin3A复合物相互作用。我们的研究支持了这样一种观点,即转录激活与抑制之间的平衡对于肾上腺皮质类固醇激素生物合成的控制至关重要。