Heminger Katherine, Markey Michael, Mpagi Meldrick, Berberich Steven J
Wright State University Boonshoft School of Medicine Biochemistry & Molecular Biology Department, Dayton, OH 45435, USA .
Aging (Albany NY). 2009 Jan;1(1):89-108. doi: 10.18632/aging.100008.
While half of all human tumors possess p53 mutations, inactivation of wild-type p53 can also occur through a variety of mechanisms that do not involve p53 gene mutation or deletion. Our laboratory has been interested in tumor cells possessing wild-type p53 protein and elevated levels of HdmX and/or Hdm2, two critical negative regulators of p53 function. In this study we utilized RNAi to knockdown HdmX or Hdm2 in MCF7 human breast cancer cells, which harbor wild-type p53 and elevated levels of HdmX and Hdm2 then examined gene expression changes and effects on cell growth.Cell cycle and growth assays confirmed that the loss of either HdmX or Hdm2 led to a significant growth inhibition and G1cell cycle arrest. Although the removal of overexpressed HdmX/2 appears limited to an anti-proliferative effect in MCF7cells, the loss of HdmX and/or Hdm2 enhanced cytotoxicity in these same cells exposed to DNA damage. Through the use of Affymetrix GeneChips and subsequent RT-qPCR validations, we uncovered a subset of anti-proliferative p53 target genes activated upon HdmX/2 knockdown. Interestingly, a second set of genes, normally transactivated by E2F1 as cells transverse the G1-S phase boundary, were found repressed in a p21-dependent manner following HdmX/2 knockdown.Taken together, these results provide novel insights into the reactivation of p53 in cells overexpressing HdmX and Hdm2.
虽然所有人类肿瘤中有一半存在p53突变,但野生型p53的失活也可通过多种不涉及p53基因突变或缺失的机制发生。我们实验室一直关注具有野生型p53蛋白以及高水平HdmX和/或Hdm2(p53功能的两个关键负调节因子)的肿瘤细胞。在本研究中,我们利用RNA干扰技术敲低MCF7人乳腺癌细胞中的HdmX或Hdm2,该细胞系具有野生型p53且HdmX和Hdm2水平升高,然后检测基因表达变化以及对细胞生长的影响。细胞周期和生长分析证实,HdmX或Hdm2的缺失均导致显著的生长抑制和G1期细胞周期阻滞。虽然在MCF7细胞中去除过表达的HdmX/2似乎仅限于抗增殖作用,但在这些遭受DNA损伤的相同细胞中,HdmX和/或Hdm2的缺失增强了细胞毒性。通过使用Affymetrix基因芯片及随后的RT-qPCR验证,我们发现了一组在HdmX/2敲低后被激活的抗增殖p53靶基因。有趣的是,另一组通常在细胞跨越G1-S期边界时由E2F1反式激活的基因,在HdmX/2敲低后以p21依赖的方式被抑制。综上所述,这些结果为过表达HdmX和Hdm2的细胞中p53的重新激活提供了新的见解。