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Oncogene|April 3, 2007
Changing the p53 master regulatory network: ELEMENTary, my dear Mr WatsonD Menendez, A Inga, J J Jordan, et al.Oncogene|June 26, 2001
Novel human p53 mutations that are toxic to yeast can enhance transactivation of specific promoters and reactivate tumor p53 mutantsA Inga, M A ResnickOncogene|April 21, 2001
p53 mutants exhibiting enhanced transcriptional activation and altered promoter selectivity are revealed using a sensitive, yeast-based functional assayA Inga, P Monti, G Fronza, et al.Basic Life Sciences|January 1, 1975
The repair of double-strand breaks in chromosomal DNA of yeastM A ResnickOncogene|June 29, 2001
p53 mutants can often transactivate promoters containing a p21 but not Bax or PIG3 responsive elementsP Campomenosi, P Monti, A Aprile, et al.International Journal of Radiation Biology and Related Studies in Physics, Chemistry, and Medicine|April 1, 1977
Nuclear DNA synthesis in yeast and the effect of irradiationM A Resnick, P MartinMolecular & General Genetics : MGG|January 16, 1976
The repair of double-strand breaks in the nuclear DNA of Saccharomyces cerevisiae and its genetic controlM A Resnick, P MartinProgress in Clinical and Biological Research|September 28, 2018
DNA homology and chromosome stability: a sensitive yeast genetic system for identifying double-stranded DNA damageM A Resnick, T Nilsson-TillgrenJournal of Bacteriology|March 1, 1972
Photoreactivation and gene dosage in yeastM A Resnick, J K SetlowProgress in Clinical and Biological Research|January 1, 1990
DNA homology and chromosome stability: a sensitive yeast genetic system for identifying double-stranded DNA damageM A Resnick, T Nilsson-TillgrenPageof 14