Molecular and Cellular Biology · 1992 · 113 citations · 45 references
Genome InstabilityMinimal Transforming DomainMany P53 MutantsP53 GeneMedicineNatural SciencesSequence-specific Dna BindingDna ReplicationMolecular BiologyNegative DominancePoint MutationMolecular BasisTumor SuppressorCancer GeneticsCancer BiologyCell BiologyTumor Biology
Mutations in the p53 gene are most frequent in cancer. Many p53 mutants possess transforming activity in vitro. In cells transformed by such mutants, the mutant protein is oligomerized with endogenous cell p53. To determine the relevance of oligomerization for transformation, miniproteins containing C-terminal portions of p53 were generated. These miniproteins, although carrying no point mutation, transformed at least as efficiently as full-length mutant p53. Transforming activity was coupled with the ability to oligomerize with wild-type p53, as well as with the ability to abrogate sequence-specific DNA binding by coexpressed wild-type p53. These findings suggest that p53-mediated transformation may operate through a dominant negative mechanism, involving the generation of DNA binding-incompetent oligomers.
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Definition of a consensus binding site for p53
Wafik S. El‐Deiry, Scott E. Kern, Jennifer A. Pietenpol et al. · Nature Genetics · 1992 · 2K citations
Suppression of Human Colorectal Carcinoma Cell Growth by Wild-Type p53
Suzanne J. Baker, Sanford D. Markowitz, Eric R. Fearon et al. · Science · 1990 · 1.8K citations
Identification of p53 as a Sequence-Specific DNA-Binding Protein
Scott E. Kern, Kenneth W. Kinzler, Arthur M. Bruskin et al. · Science · 1991 · 1.1K citations