Thomas Shana, Reisman David
Department of Biological Sciences, University of South Carolina, Columbia, SC 29208, USA.
Cancer Lett. 2006 Aug 18;240(1):48-59. doi: 10.1016/j.canlet.2005.08.027. Epub 2005 Oct 19.
Missense mutations in the p53 gene have been observed in greater than 60% of all human tumors. Recent evidence indicates that some mutations in p53 arise as the cancer progresses from a benign tumor to a metastatic tumor and that these mutations in p53 actively contribute to the process of cancer progression. Previously, we reported that the expression of the gene encoding the tissue inhibitor of metalloproteinase-3 (TIMP-3) is repressed in cells expressing codons 248 and 281 mutant p53 alleles. The ability of tumor-derived p53 mutants to inhibit TIMP-3 expression provides a novel mechanism for understanding how p53 mutations might contribute to tumorigenesis. Since mutant p53 is often expressed at elevated levels in a variety of cancers, the generation of cells in a tumor carrying certain mutations in p53 would cause inappropriately reduced expression of TIMP-3 and lead to elevated matrix metalloproteinase activity. We present the results of experiments that begin to determine the mechanism by which mutant p53 represses TIMP-3 gene expression. By generating deletion derivatives of the TIMP-3 promoter and testing them for expression and by performing DNA protein binding assays on the regions determined to be required for repression, we have identified elements that are essential for mutant p53-mediated transcriptional repression. These elements respond specifically to mutant but not wild type p53. While mutant p53 itself does not bind to the TIMP-3 promoter, we provide evidence for the presence of DNA binding proteins whose activity is enhanced in the presence of mutant p53.
在超过60%的人类肿瘤中都观察到了p53基因的错义突变。最近的证据表明,随着癌症从良性肿瘤发展为转移性肿瘤,p53会出现一些突变,并且这些p53突变会积极促进癌症进展过程。此前,我们报道过,在表达密码子248和281突变p53等位基因的细胞中,编码金属蛋白酶组织抑制剂-3(TIMP-3)的基因表达受到抑制。肿瘤来源的p53突变体抑制TIMP-3表达的能力为理解p53突变如何促进肿瘤发生提供了一种新机制。由于突变型p53在多种癌症中通常表达水平升高,肿瘤中携带特定p53突变的细胞的产生会导致TIMP-3表达不适当降低,并导致基质金属蛋白酶活性升高。我们展示了一些实验结果,这些实验开始确定突变型p53抑制TIMP-3基因表达的机制。通过构建TIMP-3启动子的缺失衍生物并检测其表达情况,以及对确定为抑制所需的区域进行DNA-蛋白质结合分析,我们确定了对突变型p53介导的转录抑制至关重要的元件。这些元件对突变型p53有特异性反应,而对野生型p53无反应。虽然突变型p53本身不与TIMP-3启动子结合,但我们提供了证据表明存在DNA结合蛋白其活性在突变型p53存在时增强。