Choe Chungyoul, Chen Nanyue, Sawadogo Michèle
Department of Molecular Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Exp Cell Res. 2005 Jan 1;302(1):1-10. doi: 10.1016/j.yexcr.2004.08.013.
USF is a small family of basic helix-loop-helix leucine zipper (bHLH-zip) transcription factors with DNA binding specificities similar to that of the c-Myc oncoprotein. Evidence for a role of USF in growth control includes inhibition of c-Myc-dependent cellular transformation in vitro and loss of USF transcriptional activity in many cancer cell lines. However, a direct effect of USF on the tumorigenicity of an established cell line has never been demonstrated. Here, cell lines derived from rat embryo fibroblasts transformed by c-Ha-Ras and either c-Myc or E1A were used as model system to investigate the tumor suppression ability of USF. Overexpression of USF2 stimulated transcription and inhibited colony formation in c-Myc-transformed, but not E1A-transformed, fibroblasts. Stable clones expressing high USF2 levels were constructed from c-Myc-transformed fibroblasts. In two of these clones, overexpressed USF2 did not activate transcription, and there was no significant change in the transformed phenotype. In contrast, a clone that expressed transcriptionally active USF2 exhibited altered morphology and a strongly decreased ability to proliferate in semisolid medium. The ability of these cells to form tumors in nude mice was also decreased by a factor of more than 30 as compared to the parental cell line or cells overexpressing transcriptionally inactive USF2. Cotransfection assays with USF- or Myc-specific dominant-negative mutants indicated that active USF2 inhibited cellular transformation by preventing transcriptional repression by c-Myc.
USF是一个由碱性螺旋-环-螺旋亮氨酸拉链(bHLH-zip)转录因子组成的小家族,其DNA结合特异性与c-Myc癌蛋白相似。USF在生长控制中起作用的证据包括在体外抑制c-Myc依赖性细胞转化以及在许多癌细胞系中丧失USF转录活性。然而,USF对已建立细胞系致瘤性的直接影响从未得到证实。在这里,源自经c-Ha-Ras和c-Myc或E1A转化的大鼠胚胎成纤维细胞的细胞系被用作模型系统来研究USF的肿瘤抑制能力。USF2的过表达刺激了c-Myc转化的成纤维细胞中的转录并抑制了集落形成,但对E1A转化的成纤维细胞没有影响。从c-Myc转化的成纤维细胞构建了表达高水平USF2的稳定克隆。在其中两个克隆中,过表达的USF2没有激活转录,并且转化表型没有显著变化。相比之下,一个表达转录活性USF2的克隆表现出形态改变以及在半固体培养基中增殖能力的强烈下降。与亲代细胞系或过表达转录无活性USF2的细胞相比,这些细胞在裸鼠中形成肿瘤的能力也降低了30倍以上。用USF或Myc特异性显性负性突变体进行的共转染试验表明,活性USF2通过阻止c-Myc的转录抑制来抑制细胞转化。