Hdm2 is an Ubiquitin Ligase of Ku70 -Akt Promotes Cell Survival by Inhibiting Hdm2-dependent Ku70 Destabilization
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A. Haas | L. Mayo | M. Jackson | D. Danielpour | K. Song | S. Matsuyama | M. Laughlin | V. Gama | J. Gomez
[1] H. Tauchi,et al. NBS1 regulates a novel apoptotic pathway through Bax activation. , 2008, DNA repair.
[2] N. Sundaresan,et al. SIRT3 Is a Stress-Responsive Deacetylase in Cardiomyocytes That Protects Cells from Stress-Mediated Cell Death by Deacetylation of Ku70 , 2008, Molecular and Cellular Biology.
[3] D. Sinclair,et al. Bax-inhibiting peptide protects cells from polyglutamine toxicity caused by Ku70 acetylation , 2007, Cell Death and Differentiation.
[4] Ignacio Aguaded,et al. Bax-inhibiting peptides derived from Ku70 and cell-penetrating pentapeptides. , 2007, Biochemical Society Transactions.
[5] Lewis C. Cantley,et al. AKT/PKB Signaling: Navigating Downstream , 2007, Cell.
[6] E. White,et al. Nutlin-3 Protects Kidney Cells during Cisplatin Therapy by Suppressing Bax/Bak Activation* , 2007, Journal of Biological Chemistry.
[7] K. Vousden,et al. An essential function of the extreme C‐terminus of MDM2 can be provided by MDMX , 2007, The EMBO journal.
[8] S. Matsuyama,et al. Cell-Permeable Penta-Peptides Derived from Bax-Inhibiting Peptide , 2006 .
[9] A. Haas,et al. Involvement of the ubiquitin pathway in decreasing Ku70 levels in response to drug-induced apoptosis. , 2006, Experimental cell research.
[10] Hui Wang,et al. Novel roles of Akt and mTOR in suppressing TGF‐β/ALK5‐mediated Smad3 activation , 2006 .
[11] P. Cossart,et al. Ku70, a Component of DNA-Dependent Protein Kinase, Is a Mammalian Receptor for Rickettsia conorii , 2005, Cell.
[12] Xin Bian,et al. Ku70 acetylation mediates neuroblastoma cell death induced by histone deacetylase inhibitors. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[13] Hong Yang,et al. Activation of p53 by MDM2 antagonists can protect proliferating cells from mitotic inhibitors. , 2005, Cancer research.
[14] D. Karunagaran,et al. Ectopic expression of Bcl-XL or Ku70 protects human colon cancer cells (SW480) against curcumin-induced apoptosis while their down-regulation potentiates it. , 2004, Carcinogenesis.
[15] M. Sawada,et al. Bax-inhibiting peptide derived from mouse and rat Ku70. , 2004, Biochemical and biophysical research communications.
[16] Myriam Gorospe,et al. Calorie Restriction Promotes Mammalian Cell Survival by Inducing the SIRT1 Deacetylase , 2004, Science.
[17] Stephen P. Jackson,et al. A means to a DNA end: the many roles of Ku , 2004, Nature Reviews Molecular Cell Biology.
[18] Hidde Ploegh,et al. Acetylation of the C terminus of Ku70 by CBP and PCAF controls Bax-mediated apoptosis. , 2004, Molecular cell.
[19] M. Saarma,et al. GDNF-deprived sympathetic neurons die via a novel nonmitochondrial pathway , 2003, The Journal of cell biology.
[20] U. Knippschild,et al. Posttranslational modification of MDM2. , 2003, Molecular cancer research : MCR.
[21] Luca Scorrano,et al. Mechanisms of cytochrome c release by proapoptotic BCL-2 family members. , 2003, Biochemical and biophysical research communications.
[22] L. Mayo,et al. The PTEN, Mdm2, p53 tumor suppressor-oncoprotein network. , 2002, Trends in biochemical sciences.
[23] Fuminori Tsuruta,et al. The Phosphatidylinositol 3-Kinase (PI3K)-Akt Pathway Suppresses Bax Translocation to Mitochondria* , 2002, The Journal of Biological Chemistry.
[24] D. Woods,et al. Phosphorylation of HDM2 by Akt , 2002, Oncogene.
[25] J. Dixon,et al. PTEN Protects p53 from Mdm2 and Sensitizes Cancer Cells to Chemotherapy* , 2002, The Journal of Biological Chemistry.
[26] H. Yamaguchi,et al. The protein kinase PKB/Akt regulates cell survival and apoptosis by inhibiting Bax conformational change , 2001, Oncogene.
[27] Yong Liao,et al. HER-2/neu induces p53 ubiquitination via Akt-mediated MDM2 phosphorylation , 2001, Nature Cell Biology.
[28] L. Mayo,et al. A phosphatidylinositol 3-kinase/Akt pathway promotes translocation of Mdm2 from the cytoplasm to the nucleus , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[29] J. Walker,et al. Structure of the Ku heterodimer bound to DNA and its implications for double-strand break repair , 2001, Nature.
[30] S. Korsmeyer,et al. Proapoptotic BAX and BAK: A Requisite Gateway to Mitochondrial Dysfunction and Death , 2001, Science.
[31] M. Koike,et al. Dimerization and Nuclear Localization of Ku Proteins* , 2001, The Journal of Biological Chemistry.
[32] Nico Tjandra,et al. Structure of Bax Coregulation of Dimer Formation and Intracellular Localization , 2000, Cell.
[33] S. Korsmeyer,et al. BCL-2 family members and the mitochondria in apoptosis. , 1999, Genes & development.
[34] Y. Fujio,et al. Akt Mediates Cytoprotection of Endothelial Cells by Vascular Endothelial Growth Factor in an Anchorage-dependent Manner* , 1999, The Journal of Biological Chemistry.
[35] Y. Hsu,et al. Conformation of the Bax C‐terminus regulates subcellular location and cell death , 1999, The EMBO journal.
[36] L. Donehower,et al. Overexpression of Mdm2 in mice reveals a p53-independent role for Mdm2 in tumorigenesis. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[37] John Calvin Reed,et al. Regulation of cell death protease caspase-9 by phosphorylation. , 1998, Science.
[38] Vishva Dixit,et al. Vascular Endothelial Growth Factor Regulates Endothelial Cell Survival through the Phosphatidylinositol 3′-Kinase/Akt Signal Transduction Pathway , 1998, The Journal of Biological Chemistry.
[39] John Calvin Reed,et al. Bcl-2 family proteins and mitochondria. , 1998, Biochimica et biophysica acta.
[40] Y. Hsu,et al. Bax in Murine Thymus Is a Soluble Monomeric Protein That Displays Differential Detergent-induced Conformations* , 1998, The Journal of Biological Chemistry.
[41] Shengfang Jin,et al. Double‐strand break repair by Ku70 requires heterodimerization with Ku80 and DNA binding functions , 1997, The EMBO journal.
[42] S. R. Datta,et al. Akt Phosphorylation of BAD Couples Survival Signals to the Cell-Intrinsic Death Machinery , 1997, Cell.
[43] F. Alt,et al. Ku70-deficient embryonic stem cells have increased ionizing radiosensitivity, defective DNA end-binding activity, and inability to support V(D)J recombination. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[44] Stephen N. Jones,et al. Regulation of p53 stability by Mdm2 , 1997, Nature.
[45] M. Oren,et al. Mdm2 promotes the rapid degradation of p53 , 1997, Nature.
[46] P. Jeggo,et al. Molecular and biochemical characterization of xrs mutants defective in Ku80 , 1997, Molecular and cellular biology.
[47] M. Raff,et al. Programmed Cell Death in Animal Development , 1997, Cell.
[48] D. Thorley-Lawson,et al. A novel form of Epstein-Barr virus latency in normal B cells in vivo , 1995, Cell.
[49] John Calvin Reed,et al. Tumor suppressor p53 is a direct transcriptional activator of the human bax gene , 1995, Cell.
[50] T. Morio,et al. Ku, Artemis, and ataxia-telangiectasia-mutated: signalling networks in DNA damage. , 2008, The international journal of biochemistry & cell biology.
[51] L. Vassilev,et al. MDM2 inhibitors for cancer therapy. , 2007, Trends in molecular medicine.
[52] Hui Wang,et al. Novel roles of Akt and mTOR in suppressing TGF-beta/ALK5-mediated Smad3 activation. , 2006, The EMBO journal.
[53] A. Levine,et al. A Single Nucleotide Polymorphism in the MDM2 Promoter Attenuates the p53 Tumor Suppressor Pathway and Accelerates Tumor Formation in Humans , 2004, Cell.
[54] A. Wyllie,et al. Cell death: the significance of apoptosis. , 1980, International review of cytology.