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Cell Cycle (Georgetown, Tex.)|August 5, 2008
ATF2: a transcription factor that elicits oncogenic or tumor suppressor activitiesAnindita Bhoumik, Ze'ev RonaiCancer Research|November 19, 2004
Inhibition of melanoma growth and metastasis by ATF2-derived peptidesAnindita Bhoumik, Lisa Gangi, Ze'ev RonaiProceedings of the National Academy of Sciences of the United States of America|March 11, 2004
Transcriptional switch by activating transcription factor 2-derived peptide sensitizes melanoma cells to apoptosis and inhibits their tumorigenicityAnindita Bhoumik, Nic Jones, Ze'ev RonaiOncogene|June 6, 2003
Death receptors and melanoma resistance to apoptosisVladimir N Ivanov, Anindita Bhoumik, Ze'ev RonaiPigment Cell Research|October 16, 2007
ATF2 on the double - activating transcription factor and DNA damage response proteinAnindita Bhoumik, Pablo Lopez-Bergami, Ze'ev RonaiThe Journal of Biological Chemistry|January 18, 2003
The cytoprotective aminothiol WR1065 activates p53 through a non-genotoxic signaling pathway involving c-Jun N-terminal kinaseOlivier Pluquet, Sophie North, Anindita Bhoumik, et al.The Journal of Cell Biology|June 24, 2004
The LIM domain protein UNC-95 is required for the assembly of muscle attachment structures and is regulated by the RING finger protein RNF-5 in C. elegansLimor Broday, Irina Kolotuev, Christine Didier, et al.Molecular Cell|May 27, 2005
ATM-dependent phosphorylation of ATF2 is required for the DNA damage responseAnindita Bhoumik, Shoichi Takahashi, Wolfgang Breitweiser, et al.Molecular Cell|August 3, 2005
RACK1 mediates activation of JNK by protein kinase C [corrected]Pablo López-Bergami, Hasem Habelhah, Anindita Bhoumik, et al.Cell Cycle (Georgetown, Tex.)|July 20, 2007
Autophosphorylation properties of inactive and active JNK2Genaro Pimienta, Scott B Ficarro, Gustavo J Gutierrez, et al.Pageof 9