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Genes & Development|March 18, 2018
Wild-type and cancer-related p53 proteins are preferentially degraded by MDM2 as dimers rather than tetramersChen Katz, Ana Maria Low-Calle, Joshua H Choe, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 23, 2013
MOZ increases p53 acetylation and premature senescence through its complex formation with PMLSusumu Rokudai, Oleg Laptenko, Suzzette M Arnal, et al.
The Journal of Biological Chemistry|November 24, 2011
p53-Dependent induction of PVT1 and miR-1204Anthony M Barsotti, Rachel Beckerman, Oleg Laptenko, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 22, 2012
Mutual protection of ribosomal proteins L5 and L11 from degradation is essential for p53 activation upon ribosomal biogenesis stressSladana Bursać, Maja Cokarić Brdovčak, Martin Pfannkuchen, et al.
The Journal of Biological Chemistry|August 24, 2007
Stability of checkpoint kinase 2 is regulated via phosphorylation at serine 456Elizabeth M Kass, Jinwoo Ahn, Tomoaki Tanaka, et al.
The Journal of Biological Chemistry|April 5, 2003
Cyclin-dependent kinases phosphorylate p73 at threonine 86 in a cell cycle-dependent manner and negatively regulate p73Christian Gaiddon, Maria Lokshin, Isabelle Gross, et al.
Genes & Development|December 15, 2025
Mutant p53: evolving perspectivesGizem Efe, Katherine Cunningham, Anil K Rustgi, et al.
Molecular Cancer Research : MCR|February 23, 2024
Systematic Characterization of p53-Regulated Long Noncoding RNAs across Human Cancers Reveals Remarkable Heterogeneity among Different Tumor TypesKausik Regunath, Vitalay Fomin, Zhaoqi Liu, et al.
Molecular Cell|May 2, 2002
Cyclin G recruits PP2A to dephosphorylate Mdm2Koji Okamoto, Hongyun Li, Michael R Jensen, et al.
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