Gong B, Almasan A
Department of Cancer Biology, Lerner Research Institute, The Cleveland Clinic Foundation, OH 44195, USA.
Gene Expr. 1999;8(4):197-206.
Cells respond to genotoxic stress by activation of many genes, including the tumor suppressor p53. p53 activates transcriptionally target genes, such as p21waf1 and gadd45, which can lead to cell cycle arrest, or bax, which can lead to cell death. We examined the response to genotoxic stress in two hematopoietic cell lines that harbor either wild-type (MOLT-4) or a mutant p53 with a codon 161 mutation (U266). We adapted a multiprobe RNase protection assay (RPA) to determine the steady-state RNA levels, and in combination with nuclear runoff assays, transcriptional rates of multiple stress-induced genes. We found a differential activation of growth arrest and cell death-specific p53 target genes in cells with wild-type or mutant p53. Our results show that genotoxic stress can activate the p21waf1 and gadd45 genes in both cell lines. However, the bax gene was not induced in U266 cells. Bax and gadd45 gene induction could be efficiently blocked by pretreating the cells with the antioxidant compound pyrrolidine dithiocarbamate, suggesting that oxidative stress was involved in these responses. Induction of all three genes in MOLT-4 cells was clearly at the transcriptional level, because we detected transcriptional activity by nuclear runoff RPA assays, and transfection with a consensus p53 binding sequence. U266 cells did not activate the same reporter, in spite of the upregulation of p21waf1 and gadd45 RNA levels. However, the p21waf1-reporter constructs containing 0.9 to 2.4 kb of the native p21 promoter were potently activated in U266 cells. These results indicate a differential regulation of p53 target genes in cells containing wild-type or codon 161 mutant p53.
细胞通过激活许多基因来应对基因毒性应激,包括肿瘤抑制因子p53。p53激活转录靶基因,如p21waf1和gadd45,它们可导致细胞周期停滞,或激活bax,导致细胞死亡。我们检测了两种造血细胞系对基因毒性应激的反应,一种含有野生型p53(MOLT-4),另一种含有密码子161突变的p53突变体(U266)。我们采用多探针核糖核酸酶保护分析(RPA)来确定稳态RNA水平,并结合核转录分析,检测多个应激诱导基因的转录速率。我们发现野生型或突变型p53细胞中生长停滞和细胞死亡特异性p53靶基因的激活存在差异。我们的结果表明,基因毒性应激可激活两种细胞系中的p21waf1和gadd45基因。然而,U266细胞中未诱导出bax基因。用抗氧化剂化合物吡咯烷二硫代氨基甲酸盐预处理细胞可有效阻断Bax和gadd45基因的诱导,这表明氧化应激参与了这些反应。MOLT-4细胞中所有三个基因的诱导显然都发生在转录水平,因为我们通过核转录RPA分析和用共有p53结合序列转染检测到了转录活性。尽管p21waf1和gadd45 RNA水平上调,但U266细胞未激活相同的报告基因。然而,含有0.9至2.4 kb天然p21启动子的p21waf1报告基因构建体在U266细胞中被有效激活。这些结果表明,在含有野生型或密码子161突变型p53的细胞中,p53靶基因存在差异调节。