AbstractThe transcription factor p53 lies at the center of a protein network that controls cell cycle progression and commitment to apoptosis [1]. p53 is inactive in proliferating cells, largely because of negative regulation by the Hdm2/Mdm2 oncoprotein, with which it physically associates. Release from this negative regulation is sufficient to activate p53 [2] and can be triggered in cells by multiple stimuli through diverse pathways [3–5]. This diversity is achieved in part because Hdm2 uses multiple mechanisms to inactivate p53; it targets p53 for ubiquitination and degradation by the proteosome [6–8], shuttles it out of the nucleus and into the cytoplasm [9, 10], prevents its interaction with transcriptional coactivators [11], and cont...
By GST pull downs and co-immunoprecipitation analyses we found that recombinant Chk2 and HDM2 can fo...
HDM2 is a p53-specific E3 ubiquitin ligase. Its overexpression leads to excessive inactivation of tu...
SummaryCancer cells neutralize p53 by deletion, mutation, proteasomal degradation, or sequestration ...
AbstractThe transcription factor p53 lies at the center of a protein network that controls cell cycl...
The transcription factor p53 lies at the center of a protein network that controls cell cycle progre...
The p53 tumor suppressor protein has a critical role in the cellular response to stress, and when ac...
The p53 regulatory network is critically involved in preventing the initiation of cancer. In unstres...
Hypoxic stress, like DNA damage, induces p53 protein accumulation and p53-dependent apoptosis in onc...
The Hdmx gene product is related to the Hdm2 oncoprotein, both of which interact with and regulate p...
Hdm2 recruits a hypoxia-sensitive co-repressor to negatively regulate p53-dependent transcriptio
The p53 regulatory network is critically involved in preventing the initiation of cancer. In unstres...
The p53 tumor suppressor protein, a critical modulator of cellular stress responses, is activated th...
The RING finger proteins HdmX and Hdm2 share significant structural and functional similarity. Hdm2 ...
Junction-mediating and regulatory protein (JMY) is a novel p53 cofactor that regulates p53 activity ...
AbstractBy GST pull downs and co-immunoprecipitation analyses we found that recombinant Chk2 and HDM...
By GST pull downs and co-immunoprecipitation analyses we found that recombinant Chk2 and HDM2 can fo...
HDM2 is a p53-specific E3 ubiquitin ligase. Its overexpression leads to excessive inactivation of tu...
SummaryCancer cells neutralize p53 by deletion, mutation, proteasomal degradation, or sequestration ...
AbstractThe transcription factor p53 lies at the center of a protein network that controls cell cycl...
The transcription factor p53 lies at the center of a protein network that controls cell cycle progre...
The p53 tumor suppressor protein has a critical role in the cellular response to stress, and when ac...
The p53 regulatory network is critically involved in preventing the initiation of cancer. In unstres...
Hypoxic stress, like DNA damage, induces p53 protein accumulation and p53-dependent apoptosis in onc...
The Hdmx gene product is related to the Hdm2 oncoprotein, both of which interact with and regulate p...
Hdm2 recruits a hypoxia-sensitive co-repressor to negatively regulate p53-dependent transcriptio
The p53 regulatory network is critically involved in preventing the initiation of cancer. In unstres...
The p53 tumor suppressor protein, a critical modulator of cellular stress responses, is activated th...
The RING finger proteins HdmX and Hdm2 share significant structural and functional similarity. Hdm2 ...
Junction-mediating and regulatory protein (JMY) is a novel p53 cofactor that regulates p53 activity ...
AbstractBy GST pull downs and co-immunoprecipitation analyses we found that recombinant Chk2 and HDM...
By GST pull downs and co-immunoprecipitation analyses we found that recombinant Chk2 and HDM2 can fo...
HDM2 is a p53-specific E3 ubiquitin ligase. Its overexpression leads to excessive inactivation of tu...
SummaryCancer cells neutralize p53 by deletion, mutation, proteasomal degradation, or sequestration ...