p53 domains: suppression, transformation, and transactivation.
- 1 January 1993
- journal article
- Vol. 3 (1) , 95-107
Abstract
We investigated the suppression, transformation, and transactivation functions of isolated segments of wild-type murine p53. Intact p53, but no segment of p53, inhibited cellular transformation by the activated ras and adenovirus E1A proteins. We conclude that most of p53 is needed for suppression of cellular proliferation. Nevertheless, the transactivating domain of herpesvirus protein VP16 was able to substitute for the N-terminal transactivating domain of p53 in cellular suppression. Thus, unless the interchanged p53 and VP16 acidic segments share additional functions, transactivation is required for suppression by p53. Interestingly, we found that all p53 segments containing amino acids 320-360 enhanced transformation by ras and E1A. This region has been associated with the oligomerization of p53 (Milner et al., 1991; Sturzbecher et al., 1992). Furthermore, no p53 segment lacking amino acids 320-360 transformed cells. Amino acids 320-360, therefore, may account for the major transforming activity of p53. Intact p53 and chimeric VP16-p53 transactivated the CAT gene under control of a p53-specific promoter, while transforming segments of p53 interfered with transactivation by wild-type p53. Our findings argue that transactivation by p53 is required for cellular suppression and that any nontransactivating p53 that retains the capacity to oligomerize with wild-type p53 would have transformation potential.This publication has 62 references indexed in Scilit:
- p53, guardian of the genomeNature, 1992
- Formation of stable p53 homotetramers and multiples of tetramersMolecular Carcinogenesis, 1992
- Prediction of progress at lastNature, 1991
- The p53 tumour suppressor geneNature, 1991
- Nuclear targeting sequences — a consensus?Trends in Biochemical Sciences, 1991
- Comparison of diverse transport signals in synthetic peptide-induced nuclear transportExperimental Cell Research, 1990
- Chromosome 17 Deletions and p53 Gene Mutations in Colorectal CarcinomasScience, 1989
- GAL4-VP16 is an unusually potent transcriptional activatorNature, 1988
- Point mutations define a sequence flanking the AUG initiator codon that modulates translation by eukaryotic ribosomesCell, 1986
- SV40 T antigen binds specifically to a cellular 53 K protein in vitroNature, 1981