Knutsen H K, Taskén K, Eskild W, Richards J S, Kurten R C, Torjesen P A, Jahnsen T, Hansson V, Guérin S, Taskén K A
Institute of Medical Biochemistry, University of Oslo, Blindern, Norway.
Mol Cell Endocrinol. 1997 Apr 25;129(1):101-14. doi: 10.1016/s0303-7207(97)04045-8.
Activation of cyclic AMP-dependent protein kinases (protein kinase A, PKA) by gonadotropins and cyclic AMP (cAMP) plays an important role in the regulation of testicular functions. A regulatory subunit, RIIbeta, of PKA is transcriptionally induced in rat Sertoli cells in response to treatment with cAMP. The present study addresses regulatory mechanisms leading to increased transcription of the rat RIIbeta gene. We have localized a footprint which overlaps one of the major transcription initiation sites in the basal promoter (-293 to -123). One of the proteins binding this sequence belongs to the NF-1 family of transcription factors. We also observed binding to a basic helix-loop-helix (bHLH) response element. Furthermore, transfection studies of various 5'-deletions of the rat RIIbeta gene in primary cultures of rat Sertoli cells and in peritubular cells revealed the presence of an upstream region (-723 to -395, cAMP-responsive region) inhibiting basal expression from the rat RIIbeta gene only in Sertoli cells. This region was found to enhance cAMP responsiveness in Sertoli cells but not in peritubular cells. Interactions with downstream elements seemed to be important for the function of the cAMP-responsive region. Although some short stretches reveal homology to the cAMP-responsive regions of other slowly cAMP-responding genes, and an AP-1-like element is present, no strong resemblance to any known regulatory element responsive to cAMP is found.
促性腺激素和环磷酸腺苷(cAMP)对环磷酸腺苷依赖性蛋白激酶(蛋白激酶A,PKA)的激活在睾丸功能调控中起着重要作用。PKA的一个调节亚基RIIβ在大鼠支持细胞中经cAMP处理后会被转录诱导。本研究探讨导致大鼠RIIβ基因转录增加的调控机制。我们定位到一个足迹,它与基础启动子(-293至-123)中的一个主要转录起始位点重叠。结合该序列的一种蛋白属于转录因子NF-1家族。我们还观察到与一个碱性螺旋-环-螺旋(bHLH)反应元件的结合。此外,对大鼠RIIβ基因各种5'端缺失片段在大鼠支持细胞原代培养物和睾丸周细胞中的转染研究表明,存在一个上游区域(-723至-395,cAMP反应区域),该区域仅在支持细胞中抑制大鼠RIIβ基因的基础表达。发现该区域增强了支持细胞中的cAMP反应性,但在睾丸周细胞中没有。与下游元件的相互作用似乎对cAMP反应区域的功能很重要。尽管一些短片段与其他对cAMP反应较慢的基因的cAMP反应区域具有同源性,并且存在一个AP-1样元件,但未发现与任何已知的对cAMP有反应的调控元件有强烈相似性。