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Arf诱导p53依赖和非依赖的抗增殖基因。

Arf induces p53-dependent and -independent antiproliferative genes.

作者信息

Kuo Mei-Ling, Duncavage Eric J, Mathew Rose, den Besten Willem, Pei Deqing, Naeve Deanna, Yamamoto Tadashi, Cheng Cheng, Sherr Charles J, Roussel Martine F

机构信息

Department of Genetics and Tumor Cell Biology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.

出版信息

Cancer Res. 2003 Mar 1;63(5):1046-53.

Abstract

The tumor suppressor p19(Arf) (p14(ARF) in humans), encoded by the Ink4a/Arf locus, is mutated, deleted, or silenced in many forms of cancer. p19(Arf) induces growth arrest by antagonizing the activity of the p53-negative regulator, Mdm2, thereby inducing a p53 transcriptional response. p19(Arf) can also inhibit cell cycle progression of mouse embryo fibroblasts lacking Cip1 or lacking both Mdm2 and p53, although in the absence of p53, arrest occurs more slowly. Profiling with high-density oligonucleotide GeneChips and cDNA microarrays was used to interrogate mouse genes, the expression of which was induced or suppressed by a conditionally regulated Arf gene. Cluster analysis of temporal gene expression patterns and validation of the results by RNA analysis identified Arf-responsive genes whose induction was both p53-dependent and -independent. The latter included four members of the B-cell translocation gene family (Btg1, Btg2, Btg3, and Tob1) that were demonstrated to inhibit cell proliferation in primary mouse embryo fibroblasts expressing or lacking functional p53. Together, the results indicate that p19(Arf) induces a broad spectrum of proteins that likely act in concert to arrest cell proliferation.

摘要

由Ink4a/Arf基因座编码的肿瘤抑制因子p19(Arf)(人类为p14(ARF))在多种癌症中发生突变、缺失或沉默。p19(Arf)通过拮抗p53负调节因子Mdm2的活性诱导生长停滞,从而诱导p53转录反应。p19(Arf)还可以抑制缺乏Cip1或同时缺乏Mdm2和p53的小鼠胚胎成纤维细胞的细胞周期进程,尽管在没有p53的情况下,停滞发生得更慢。使用高密度寡核苷酸基因芯片和cDNA微阵列进行分析,以研究小鼠基因,其表达受条件调节的Arf基因诱导或抑制。对时间基因表达模式进行聚类分析并通过RNA分析验证结果,确定了Arf反应基因,其诱导既依赖p53又独立于p53。后者包括B细胞易位基因家族的四个成员(Btg1、Btg2、Btg3和Tob1),它们在表达或缺乏功能性p53的原代小鼠胚胎成纤维细胞中被证明可抑制细胞增殖。总之,结果表明p19(Arf)诱导多种蛋白质,这些蛋白质可能协同作用以阻止细胞增殖。

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