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Methods in Molecular Biology (Clifton, N.J.)|March 19, 2011
Preparation of high-molecular-weight DNA for use in DNA transfection : secondary transfections for cloning active genes by direct phenotypic selectionM A TainskyJournal of Virology|March 1, 1981
Analysis of the virogenes related to the rhesus monkey endogenous type C retrovirus in monkeys and apesM A TainskyMolecular and Cellular Biology|December 22, 1998
Coactivator PC4 mediates AP-2 transcriptional activity and suppresses ras-induced transformation dependent on AP-2 transcriptional interferenceP Kannan, M A TainskyOncogene|August 20, 2008
Critical pathways in cellular senescence and immortalization revealed by gene expression profilingA L Fridman, M A TainskyGene|June 18, 1998
pZ402, an improved SV40-based shuttle vector containing a T-antigen mutant unable to interact with wild-type p53E Kraus, L C Strong, M A TainskyMolecular and Cellular Biology|June 1, 1987
The oncogenic forms of N-ras or H-ras prevent skeletal myoblast differentiationE N Olson, G Spizz, M A TainskyCancer Metastasis Reviews|March 1, 1995
Genomic instability due to germline p53 mutations drives preneoplastic progression toward cancer in human cellsM A Tainsky, F Z Bischoff, L C StrongSomatic Cell and Molecular Genetics|January 1, 1990
Susceptibility for N-ras-mediated transformation requires loss of tumor suppressor activityD B Krizman, B C Giovanella, M A TainskyAmerican Journal of Epidemiology|January 15, 1992
The Li-Fraumeni syndrome: from clinical epidemiology to molecular geneticsL C Strong, W R Williams, M A TainskyNucleic Acids Research|January 16, 1999
PolyADP-ribose polymerase is a coactivator for AP-2-mediated transcriptional activationP Kannan, Y Yu, S Wankhade, et al.Pageof 7