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Protein Science : a Publication of the Protein Society|September 24, 1999
Change in oligomerization specificity of the p53 tetramerization domain by hydrophobic amino acid substitutionsE S Stavridi, N H Chehab, L C Caruso, et al.Nature Medicine|October 1, 1996
Structure-based rescue of common tumor-derived p53 mutantsA M Wieczorek, J L Waterman, M J Waterman, et al.Journal of Dental Education|December 1, 1985
Clinical medicine for dental studentsN S Stearns, S M Schwartz, T D Halazonetis, et al.Journal of Periodontology|September 1, 1985
Pocket formation 3 years after comprehensive periodontal therapy. A retrospective studyT D Halazonetis, J B Smulow, O W Donnenfeld, et al.Nature Genetics|June 10, 1998
ATM-dependent activation of p53 involves dephosphorylation and association with 14-3-3 proteinsM J Waterman, E S Stavridi, J L Waterman, et al.Proceedings of the National Academy of Sciences of the United States of America|August 1, 1990
Drosophila homolog of the mammalian jun oncogene is expressed during embryonic development and activates transcription in mammalian cellsK Zhang, J R Chaillet, L A Perkins, et al.Oncogene|August 14, 1997
Two tandem and independent sub-activation domains in the amino terminus of p53 require the adaptor complex for activityR Candau, D M Scolnick, P Darpino, et al.The EMBO Journal|October 8, 1997
Hydrophobic side-chain size is a determinant of the three-dimensional structure of the p53 oligomerization domainM McCoy, E S Stavridi, J L Waterman, et al.Molecular Cell|January 10, 2002
Acetylation of p53 activates transcription through recruitment of coactivators/histone acetyltransferasesN A Barlev, L Liu, N H Chehab, et al.Virology|June 12, 1999
Involvement of a p53-dependent pathway in rubella virus-induced apoptosisK Megyeri, K Berencsi, T D Halazonetis, et al.Pageof 4