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Selenomethionine regulation of p53 by a ref1-dependent redox mechanism

机译:ref1依赖的氧化还原机制对硒代蛋氨酸的调节

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The cancer chemopreventive properties of selenium compounds are well documented, yet little is known of the mechanism(s) by which these agents inhibit carcinogenesis. We show that selenium in the form of Selenomethionine (SeMet) can activate the p53 tumor suppressor protein by a redox mechanism that requires the redox factor Ref1. Assays to measure direct reduction/oxidation of p53 showed a SeMet-dependent response that was blocked by a dominant-negative Ref1. By using a peptide containing only p53 cysteine residues 275 and 277, we demonstrate the importance of these residues in the SeMet-induced response. SeMet induced sequence-specific DNA binding and transactivation by p53. Finally, cellular responses to SeMet were determined in mouse embryo fibroblasts wild-type or null for p53 genes. The evidence suggests that the DNA repair branch of the p53 pathway was activated. The central relevance of DNA repair to cancer prevention is discussed.
机译:硒化合物的癌症化学预防特性已得到充分证明,但对于这些试剂抑制癌变的机理了解甚少。我们显示硒以硒代蛋氨酸(SeMet)的形式可以通过需要氧化还原因子Ref1的氧化还原机制激活p53肿瘤抑制蛋白。测定p53直接还原/氧化的方法表明,SeMet依赖性反应被显性阴性Ref1阻断。通过使用仅包含p53半胱氨酸残基275和277的肽,我们证明了这些残基在SeMet诱导的应答中的重要性。 SeMet通过p53诱导序列特异性DNA结合和反式激活。最后,在野生型或p53基因无效的小鼠胚胎成纤维细胞中确定了对SeMet的细胞反应。有证据表明,p53途径的DNA修复分支被激活。讨论了DNA修复与癌症预防的中心相关性。

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