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首页> 外文期刊>Molecular and Cellular Biology >Tumor Suppressor p53 Can Participate in Transcriptional Induction of the GADD45 Promoter in the Absence of Direct DNA Binding
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Tumor Suppressor p53 Can Participate in Transcriptional Induction of the GADD45 Promoter in the Absence of Direct DNA Binding

机译:在没有直接DNA结合的情况下,肿瘤抑制因子p53可以参与GADD45启动子的转录诱导。

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摘要

The GADD45 gene is a growth arrest-associated gene that is induced by certain DNA-damaging agents and other stresses, such as starvation, in all mammalian cells. In addition to a strong p53-binding element in an intronic sequence, we have recently found that p53, while not required or sufficient alone, may contribute to the stress responsiveness of the promoter. Much of the responsiveness was localized to a GC-rich motif in the proximal promoter which contains multiple Egr1 sites and a larger WT1 site; this 20-bp WT1 motif is identical to the WT1-binding site in the PDGF-A gene. In extracts from a human breast carcinoma cell line expressing p53 and WT1, which is known to associate with p53 in vivo, evidence was obtained that these proteins are in a complex that binds this 20-bp element. A combination of p53 and WT1 expression vectors strongly induced a GADD45-reporter construct, while mutation of the WT1-Egr1 site in the promoter prevented this induction. Abrogation of p53 function by a dominant-negative vector or abrogation of WT1 function by an antisense vector markedly reduced the induction of this promoter. Since p53 does not bind directly to the promoter, these results indicate that p53 can contribute to the positive regulation of a promoter by protein-protein interactions.
机译: GADD45 基因是一种与生长停滞相关的基因,在某些哺乳动物细胞中,这些基因是由某些DNA破坏剂和其他压力(例如饥饿)诱导的。除了内含子序列中强大的p53结合元件外,我们最近发现,p53虽然不是必需的或单独的,但可能有助于启动子的应激反应。大部分反应性定位于近端启动子中的一个富含GC的基序,该基序包含多个Egr1位点和一个较大的WT1位点。这个20 bp的WT1基序与 PDGF-A 基因中的WT1结合位点相同。在已知表达p53和WT1的人乳腺癌细胞系中与体内p53相关联的提取物中,已获得证据表明这些蛋白质处于结合该20 bp元素的复合物中。 p53和WT1表达载体的组合强烈诱导了 GADD45 -reporter构建体,而启动子中WT1-Egr1位点的突变阻止了这种诱导。显性负性载体对p53功能的废除或反义载体对WT1功能的废除显着降低了该启动子的诱导。由于p53不直接与启动子结合,因此这些结果表明p53可通过蛋白-蛋白质相互作用来促进启动子的正向调节。

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