Arva Nicoleta C, Gopen Tamara R, Talbott Kathryn E, Campbell Latoya E, Chicas Agustin, White David E, Bond Gareth L, Levine Arnold J, Bargonetti Jill
Institute for Biomolecular Structure and Function and Department of Biological Sciences, Hunter College and Graduate School, City University of New York, New York, New York 10021, USA.
J Biol Chem. 2005 Jul 22;280(29):26776-87. doi: 10.1074/jbc.M505203200. Epub 2005 May 20.
In cancer cells, the function of the tumor suppressor protein p53 is usually blocked. Impairment of the p53 pathway results in tumor cells with endogenous overexpression of Mdm2 via a naturally occurring single nucleotide polymorphism (SNP) in the mdm2 gene at position 309. Here we report that in mdm2 SNP309 cells, inactivation of p53 results in a chromatin-associated Mdm2-p53 complex without clearance of p53 by protein degradation. Nuclear accumulation of p53 protein in mdm2 SNP309 cells results after 6 h of camptothecin, etoposide, or mitomycin C treatment, with the p53 protein phosphorylated at Ser15. Chromatin immunoprecipitation demonstrated p53 and Mdm2 bound to p53 responsive elements. Interestingly, although the p53 protein was able to bind to DNA, quantitative PCR showed compromised transcription of endogenous target genes. Additionally, exogenously introduced p53 was incapable of activating transcription from p53 responsive elements in SNP309 cells, confirming the trans-acting nature of the inhibitor. Inhibition of Mdm2 by siRNA resulted in transcriptional activation of these p53 targets. Our data suggest that overproduction of Mdm2, resulting from a naturally occurring SNP, inhibits chromatin-bound p53 from activating the transcription of its target genes.
在癌细胞中,肿瘤抑制蛋白p53的功能通常会被阻断。p53信号通路的受损会导致肿瘤细胞通过mdm2基因第309位天然存在的单核苷酸多态性(SNP)使Mdm2内源性过表达。在此我们报告,在mdm2 SNP309细胞中,p53的失活导致形成一种与染色质相关的Mdm2 - p53复合物,且p53不会通过蛋白质降解而被清除。在用喜树碱、依托泊苷或丝裂霉素C处理6小时后,mdm2 SNP309细胞中会出现p53蛋白的核积累,p53蛋白在Ser15位点发生磷酸化。染色质免疫沉淀表明p53和Mdm2与p53反应元件结合。有趣的是,尽管p53蛋白能够与DNA结合,但定量PCR显示内源性靶基因的转录受到损害。此外,外源导入的p53无法激活SNP309细胞中p53反应元件的转录,证实了这种抑制剂的反式作用性质。通过小干扰RNA(siRNA)抑制Mdm2会导致这些p53靶标的转录激活。我们的数据表明,由天然存在的SNP导致的Mdm2过量产生会抑制与染色质结合的p53激活其靶基因的转录。