The mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulator of the p53 tumor suppressor, but growing evidence indicates that its oncogenic activities extend beyond p53. Here, we show that MDM2 is recruited to chromatin independently of p53 to regulate a transcriptional program implicated in amino acid metabolism and redox homeostasis. Identification of MDM2 target genes at the whole-genome level highlights an important role for ATF3/4 transcription factors in tethering MDM2 to chromatin. MDM2 recruitment to chromatin is a tightly regulated process that occurs during oxidative stress and serine/glycine deprivation and is modulated by the pyruvate kinase M2 (PKM2) metabolic enzyme. Depletion of endogenous MDM2 in ...
MDM2 oncogenic protein is the principal cellular antagonist of the p53 tumor suppresser gene. p53 ac...
The really interesting genes (RING)-finger-containing oncoprotein, Mdm2, is a promising drug target ...
Signaling diversity and subsequent complexity in higher eukaryotes is partially explained by one gen...
The mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulator of the p53 ...
The mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulator of the p53 ...
The mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulator of the p53 ...
peer reviewedThe mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulato...
International audienceThe oncoprotein MDM2 is recognized as a major negative regulator of the p53 tu...
L'oncoprotéine MDM2 est reconnue comme un régulateur négatif majeur du suppresseur de tumeur p53, ma...
In cancer, the mouse double minute 2 (MDM2) is an oncoprotein that contributes to the promotion of c...
The p53 tumor suppressor protein is a DNA damage responsive transcription factor that affects divers...
The p53 tumor suppressor protein is a DNA damage responsive transcription factor that affects divers...
In cells undergoing stress, the p53 transcription factor is stabilized and activates the expression ...
Since its discovery about 40 years ago, the transcription factor p53 has turned into the most exten...
Murine double minute-2 (MDM2) was first described as a p53-associated protein and potential oncogene...
MDM2 oncogenic protein is the principal cellular antagonist of the p53 tumor suppresser gene. p53 ac...
The really interesting genes (RING)-finger-containing oncoprotein, Mdm2, is a promising drug target ...
Signaling diversity and subsequent complexity in higher eukaryotes is partially explained by one gen...
The mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulator of the p53 ...
The mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulator of the p53 ...
The mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulator of the p53 ...
peer reviewedThe mouse double minute 2 (MDM2) oncoprotein is recognized as a major negative regulato...
International audienceThe oncoprotein MDM2 is recognized as a major negative regulator of the p53 tu...
L'oncoprotéine MDM2 est reconnue comme un régulateur négatif majeur du suppresseur de tumeur p53, ma...
In cancer, the mouse double minute 2 (MDM2) is an oncoprotein that contributes to the promotion of c...
The p53 tumor suppressor protein is a DNA damage responsive transcription factor that affects divers...
The p53 tumor suppressor protein is a DNA damage responsive transcription factor that affects divers...
In cells undergoing stress, the p53 transcription factor is stabilized and activates the expression ...
Since its discovery about 40 years ago, the transcription factor p53 has turned into the most exten...
Murine double minute-2 (MDM2) was first described as a p53-associated protein and potential oncogene...
MDM2 oncogenic protein is the principal cellular antagonist of the p53 tumor suppresser gene. p53 ac...
The really interesting genes (RING)-finger-containing oncoprotein, Mdm2, is a promising drug target ...
Signaling diversity and subsequent complexity in higher eukaryotes is partially explained by one gen...