p53 and Tumor Suppression: It Takes a Network is a research paper published in Trends in Cell Biology (2021). On theSindex it has a DataRank of 0. It has been cited 323 times.
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National Cancer Institute
Grant: T31DT1713
National Institutes of Health
Grant: CA197591
Tobacco-Related Disease Research Program
Grant: 28IP-0037
Tobacco-Related Disease Research Program
Grant: CA09302
NCI NIH HHS
Grant: T32 CA009302
NCI NIH HHS
Grant: R35 CA197591
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Keywords
Additional file 1 of p63 orchestrates serine and one carbon metabolism enzymes expression in head and neck cancer
Additional file 1 of p63 orchestrates serine and one carbon metabolism enzymes expression in head and neck cancer
Additional file 3 of DCAF13 inhibits the p53 signaling pathway by promoting p53 ubiquitination modification in lung adenocarcinoma
Additional file 3 of DCAF13 inhibits the p53 signaling pathway by promoting p53 ubiquitination modification in lung adenocarcinoma
Additional file 1 of Synthetic lethality of combined ULK1 defection and p53 restoration induce pyroptosis by directly upregulating GSDME transcription and cleavage activation through ROS/NLRP3 signaling
Additional file 1 of Synthetic lethality of combined ULK1 defection and p53 restoration induce pyroptosis by directly upregulating GSDME transcription and cleavage activation through ROS/NLRP3 signaling
Understanding Genetic Interactions in the p53 Network in Lung Adenocarcinoma Suppression
Deciphering p53 Transcriptional Programs in Lung Cancer Suppression
Additional file 1 of DCAF13 inhibits the p53 signaling pathway by promoting p53 ubiquitination modification in lung adenocarcinoma
Additional file 2 of DCAF13 inhibits the p53 signaling pathway by promoting p53 ubiquitination modification in lung adenocarcinoma
Additional file 2 of DCAF13 inhibits the p53 signaling pathway by promoting p53 ubiquitination modification in lung adenocarcinoma
Additional file 1 of DCAF13 inhibits the p53 signaling pathway by promoting p53 ubiquitination modification in lung adenocarcinoma
Additional file 1 of Activation of the p53 signaling pathway by piRNA-MW557525 overexpression induces a G0/G1 phase arrest thus inhibiting neuroblastoma growth
Additional file 1 of Activation of the p53 signaling pathway by piRNA-MW557525 overexpression induces a G0/G1 phase arrest thus inhibiting neuroblastoma growth