Picon A, Bertagna X, de Keyzer Y
CNRS UPR 1524, Université René Descartes, Institut Cochin de Génétique Moléculaire, CHU Cochin-Port Royal, Paris, France.
Oncogene. 1999 Apr 22;18(16):2627-33. doi: 10.1038/sj.onc.1202635.
The small cell lung carcinoma (SCLC) cell line DMS-79 has been used as a model for studying the molecular mechanism underlying the ectopic ACTH syndrome. We previously showed that two domains of the human Proopiomelanocortin (POMC) gene promoter were specifically active in DMS-79 cells. The present study focuses on the more distal one, Domain IV (-376/-417). DNaseI footprinting experiments identified a single binding site for DMS-79 cell proteins in this domain. Gel-shift and sequence analysis indicated that E2F proteins might bind this site. Indeed, proteins from DMS-79 cells which bind this site (i) have in vitro DNA binding properties indistinguishable from those of E2F proteins (ii) form, like E2F proteins, multiprotein complexes which can be dissociated by sodium deoxycholate and (iii) are recognized by antibodies directed against E2F proteins. Further, we show that the rat POMC distal promoter domain contains a homologous sequence which constitutes a natural mutant of the human POMC E2F binding site, since it does not bind E2F. We show by transient transfection that this natural mutant, in the context of the rat POMC promoter, is not active in DMS-79 cells by contrast to the human POMC E2F binding site. We conclude that E2F binding is required for the activity of Domain IV in DMS-79 cells and contributes to the expression of the POMC gene in SCLC. Further studies are required to elucidate the role of E2F factors in POMC gene transcription in SCLC cells, but our results have identified mechanisms different from those in pituitary corticotroph cells that are used by these SCLC tumor cells.
小细胞肺癌(SCLC)细胞系DMS - 79已被用作研究异位促肾上腺皮质激素(ACTH)综合征潜在分子机制的模型。我们之前表明,人阿黑皮素原(POMC)基因启动子的两个结构域在DMS - 79细胞中具有特异性活性。本研究聚焦于更远端的结构域IV(-376 / -417)。DNaseI足迹实验在该结构域中鉴定出一个DMS - 79细胞蛋白的单一结合位点。凝胶迁移和序列分析表明E2F蛋白可能结合该位点。实际上,来自DMS - 79细胞且结合该位点的蛋白:(i)具有与E2F蛋白无法区分的体外DNA结合特性;(ii)像E2F蛋白一样形成多蛋白复合物,该复合物可被脱氧胆酸钠解离;(iii)被针对E2F蛋白的抗体识别。此外,我们发现大鼠POMC远端启动子结构域包含一个同源序列,它构成了人POMC E2F结合位点的天然突变体,因为它不结合E2F。我们通过瞬时转染表明,在大鼠POMC启动子的背景下,与人类POMC E2F结合位点相比,这个天然突变体在DMS - 79细胞中无活性。我们得出结论,E2F结合是DMS - 79细胞中结构域IV活性所必需的,并且有助于SCLC中POMC基因的表达。需要进一步研究来阐明E2F因子在SCLC细胞中POMC基因转录中的作用,但我们的结果已经确定了与这些SCLC肿瘤细胞所利用的垂体促肾上腺皮质激素细胞不同的机制。