Functionally distinct polymorphic sequences in the human genome that are targets for p53 transactivation

DJ Tomso, A Inga, D Menendez… - Proceedings of the …, 2005 - National Acad Sciences
DJ Tomso, A Inga, D Menendez, GS Pittman, MR Campbell, F Storici, DA Bell, MA Resnick
Proceedings of the National Academy of Sciences, 2005National Acad Sciences
The p53 tumor suppressor protein is a master regulatory transcription factor that coordinates
cellular responses to DNA damage and cellular stress. Besides mutations in p53, or in
proteins involved in the p53 response pathway, genetic variation in promoter response
elements (REs) of p53 target genes is expected to alter biological responses to stress. To
identify SNPs in p53 REs that may modify p53-controlled gene expression, we developed an
approach that combines a custom bioinformatics search to identify candidate SNPs with …
The p53 tumor suppressor protein is a master regulatory transcription factor that coordinates cellular responses to DNA damage and cellular stress. Besides mutations in p53, or in proteins involved in the p53 response pathway, genetic variation in promoter response elements (REs) of p53 target genes is expected to alter biological responses to stress. To identify SNPs in p53 REs that may modify p53-controlled gene expression, we developed an approach that combines a custom bioinformatics search to identify candidate SNPs with functional yeast and mammalian cell assays to assess their effect on p53 transactivation. Among ≈2 million human SNPs, we identified >200 that seem to disrupt functional p53 REs. Eight of these SNPs were evaluated in functional assays to determine both the activity of the putative RE and the impact of the candidate SNPs on transactivation. All eight candidate REs were functional, and in every case the SNP pair exhibited differential transactivation capacities. Additionally, six of the eight genes adjacent to these SNPs are induced by genotoxic stress or are activated directly by transfection with p53 cDNA. Thus, this strategy efficiently identifies SNPs that may differentially affect gene expression responses in the p53 regulatory pathway.
National Acad Sciences