Provot S, Pouponnot C, Lecoq O, Calothy G, Felder-Schmittbuhl M P
UMR 146 CNRS-Institut Curie, Orsay, France.
Oncogene. 2000 Sep 28;19(41):4736-45. doi: 10.1038/sj.onc.1203837.
The neuroretina is a functional unit of the central nervous system which arises through successive steps of division, growth arrest and differentiation of neuroectodermal precursors. Postmitotic quail neuroretina (QNR) cells are conditionally induced to divide upon infection with temperature sensitive mutants of Rous sarcoma virus (RSV), since QNR cell division can be arrested by either inactivating p60v-Src at the nonpermissive temperature (41 degrees C) or by serum deprivation at 37 degrees C. We are studying the transcriptional control of QR1, a neuroretina specific gene, whose expression is down-regulated in proliferating cells at 37 degrees C and is fully restored when these cells are made quiescent. We previously showed that this quiescence specific upregulation implicates a promoter region named A box, which binds Maf transcription factors. We report the identification of the C box, a second promoter sequence that activates QR1 transcription in non dividing cells. This sequence is able to form two DNA-protein complexes, one of which (C4) is predominantly detected in growth arrested NR cells. We identified the DNA binding site for C4 and described mutations that abolish both C4 binding and promoter activity in quiescent cells. Moreover, we show that a multimerized C box is able to stimulate a heterologous promoter in non dividing cells and constitutes, therefore, a novel quiescence responsive enhancer. Finally, we report that QR1 transcriptional response to cell quiescence requires cooperation between the C box and A box.
神经视网膜是中枢神经系统的一个功能单元,它由神经外胚层前体通过连续的分裂、生长停滞和分化步骤产生。有丝分裂后的鹌鹑神经视网膜(QNR)细胞在感染劳氏肉瘤病毒(RSV)的温度敏感突变体后会被有条件地诱导分裂,因为QNR细胞分裂可以通过在非允许温度(41摄氏度)下使p60v - Src失活或在37摄氏度下剥夺血清来阻止。我们正在研究QR1的转录调控,QR1是一种神经视网膜特异性基因,其表达在37摄氏度下增殖细胞中下调,而当这些细胞静止时则完全恢复。我们之前表明,这种静止特异性上调涉及一个名为A框的启动子区域,它结合Maf转录因子。我们报告了C框的鉴定,C框是第二个启动子序列,可在非分裂细胞中激活QR1转录。该序列能够形成两种DNA - 蛋白质复合物,其中一种(C4)主要在生长停滞的NR细胞中检测到。我们确定了C4的DNA结合位点,并描述了消除静止细胞中C4结合和启动子活性的突变。此外,我们表明多聚化的C框能够在非分裂细胞中刺激异源启动子,因此构成了一种新型的静止反应增强子。最后,我们报告QR1对细胞静止的转录反应需要C框和A框之间的合作。