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      p53 isoforms can regulate p53 transcriptional activity.

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          Abstract

          The recently discovered p53-related genes, p73 and p63, express multiple splice variants and N-terminally truncated forms initiated from an alternative promoter in intron 3. To date, no alternative promoter and multiple splice variants have been described for the p53 gene. In this study, we show that p53 has a gene structure similar to the p73 and p63 genes. The human p53 gene contains an alternative promoter and transcribes multiple splice variants. We show that p53 variants are expressed in normal human tissue in a tissue-dependent manner. We determine that the alternative promoter is conserved through evolution from Drosophila to man, suggesting that the p53 family gene structure plays an essential role in the multiple activities of the p53 family members. Consistent with this hypothesis, p53 variants are differentially expressed in human breast tumors compared with normal breast tissue. We establish that p53beta can bind differentially to promoters and can enhance p53 target gene expression in a promoter-dependent manner, while Delta133p53 is dominant-negative toward full-length p53, inhibiting p53-mediated apoptosis. The differential expression of the p53 isoforms in human tumors may explain the difficulties in linking p53 status to the biological properties and drug sensitivity of human cancer.

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          Author and article information

          Journal
          Genes Dev
          Genes & development
          Cold Spring Harbor Laboratory
          0890-9369
          0890-9369
          Sep 15 2005
          : 19
          : 18
          Affiliations
          [1 ] Department of Surgery, Cancer Research-UK Cell Transformation Research Group, University of Dundee, Ninewells Hospital, Scotland, UK. j.bourdon@dundee.ac.uk
          Article
          gad.1339905
          10.1101/gad.1339905
          1221884
          16131611
          5310ebf7-11af-422d-a7c1-ab3dafaa6d42
          History

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