Delayed radioprotection by nuclear transcription factor kappaB -mediated induction of manganese superoxide dismutase in human microvascular endothelial cells after exposure to the free radical scavenger WR1065.
暂无分享,去创建一个
L. Oberley | C. Weydert | Y. Kataoka | J. Murley | D. Grdina | Larry W Oberley | Jeffrey S Murley | Yasushi Kataoka | Christine J Weydert | David J Grdina
[1] D. Longo,et al. Overexpression of mitochondrial manganese superoxide dismutase promotes the survival of tumor cells exposed to interleukin‐1, tumor necrosis factor, selected anticancer drugs, and ionizing radiation , 1993, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[2] M. Kuroda,et al. Expression of manganese superoxide dismutase reduces tumor control radiation dose: gene-radiotherapy. , 1995, Cancer research.
[3] V. Rangnekar,et al. TPA-activated transcription of the human MnSOD gene: role of transcription factors Sp-1 and Egr-1. , 2001, DNA and cell biology.
[4] D. Harman. Free radicals in aging , 1988, Molecular and Cellular Biochemistry.
[5] J. Yodoi,et al. Thiordoxin regulates the DNA binding activity of NF-χB by reduction of a disulphid bond involving cysteine 62 , 1992 .
[6] A. Guillouzo,et al. Oltipraz stimulates the transcription of the manganese superoxide dismutase gene in rat hepatocytes. , 1997, Carcinogenesis.
[7] R. Wells,et al. The radioprotector WR1065 reduces radiation-induced mutations at the hypoxanthine-guanine phosphoribosyl transferase locus in V79 cells. , 1985, Carcinogenesis.
[8] G. Kroemer,et al. Mitochondrial control of nuclear apoptosis , 1996, The Journal of experimental medicine.
[9] L. Packer,et al. Redox regulation of NF-kappa B activation. , 1997, Free radical biology & medicine.
[10] C. White,et al. Activation of NF-kappa B and elevation of MnSOD gene expression by thiol reducing agents in lung adenocarcinoma (A549) cells. , 1995, The American journal of physiology.
[11] D. S. St. Clair,et al. Suppression of radiation‐induced neoplastic transformation by overexpression of mitochondrial superoxide dismutase , 1992, Molecular carcinogenesis.
[12] L. Oberley,et al. Assay of superoxide dismutase activity in tumor tissue. , 1984, Methods in enzymology.
[13] Y. Kataoka,et al. Differential activation of nuclear transcription factor kappaB, gene expression, and proteins by amifostine's free thiol in human microvascular endothelial and glioma cells. , 2002, Seminars in radiation oncology.
[14] Y. Kataoka,et al. Radioprotectants: Current Status and New Directions , 2002, Oncology.
[15] D. Hallahan,et al. Activation of NFκB and MnSOD gene expression by free radical scavengers in human microvascular endothelial cells , 2001 .
[16] L. Shaw,et al. Pharmacokinetics of amifostine: effects of dose and method of administration. , 1999, Seminars in oncology.
[17] N. Shigematsu,et al. Thiol and disulfide metabolites of the radiation protector and potential chemopreventive agent WR-2721 are linked to both its anti-cytotoxic and anti-mutagenic mechanisms of action. , 1995, Carcinogenesis.
[18] L. Oberley,et al. Overexpression of manganese-containing superoxide dismutase confers resistance to the cytotoxicity of tumor necrosis factor alpha and/or hyperthermia. , 1997, Cancer research.
[19] L. Oberley,et al. Radiation-Induced Adaptive Responses Dismutase-Mediated Gene Expression in Manganese Superoxide , 2002 .
[20] R. Swerlick,et al. HMEC-1: establishment of an immortalized human microvascular endothelial cell line. , 1992, The Journal of investigative dermatology.
[21] D. Bicket. Using ACE inhibitors appropriately. , 2002, American family physician.
[22] H. Pahl,et al. The Anti-inflammatory Sesquiterpene Lactone Helenalin Inhibits the Transcription Factor NF-κB by Directly Targeting p65* , 1998, The Journal of Biological Chemistry.
[23] M. M. Bradford. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. , 1976, Analytical biochemistry.
[24] Y. Kataoka,et al. Amifostine: Mechanisms of Action Underlying Cytoprotection and Chemoprevention , 2000, Drug metabolism and drug interactions.
[25] S. Borrello,et al. NFκB-Independent Transcriptional Induction of the Human Manganous Superoxide Dismutase Gene , 1997 .
[26] L. Oberley,et al. Delayed Cytoprotection after Enhancement of Sod2 (MnSOD) Gene Expression in SA-NH Mouse Sarcoma Cells Exposed to WR-1065, the Active Metabolite of Amifostine , 2002, Radiation research.
[27] J. Greenberger,et al. Mitochondrial Localization of Superoxide Dismutase is Required for Decreasing Radiation-Induced Cellular Damage , 2003, Radiation research.
[28] U. K. Laemmli,et al. Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4 , 1970, Nature.
[29] S. Soback,et al. INTERACTION OF MONENSIN AND SULFADIMETHOXINE IN BROILERS, AS MEDIATED BY HEPATIC MICROSOMAL CYTOCHROME P-450 MONOOXYGENASES , 2000, Drug metabolism and drug interactions.
[30] Dingcai Cao,et al. Delayed Radioprotection by NFκB-Mediated Induction of Sod2 (MnSOD) in SA-NH Tumor Cells after Exposure to Clinically Used Thiol-Containing Drugs , 2004, Radiation research.
[31] D. S. St. Clair,et al. Transcriptional regulation of the human manganese superoxide dismutase gene: the role of specificity protein 1 (Sp1) and activating protein-2 (AP-2). , 2002, The Biochemical journal.
[32] L. Oberley,et al. Role of antioxidant enzymes in cell immortalization and transformation , 1988, Molecular and Cellular Biochemistry.
[33] L. Tretter,et al. The effect of the radioprotector WR-2721 and WR-1065 on mitochondrial lipid peroxidation. , 1990, International journal of radiation biology.
[34] D. Brizel,et al. Phase III randomized trial of amifostine as a radioprotector in head and neck cancer. , 2000, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[35] D. S. St. Clair,et al. An intronic NF-kappaB element is essential for induction of the human manganese superoxide dismutase gene by tumor necrosis factor-alpha and interleukin-1beta. , 1999, DNA and cell biology.
[36] J. Sun,et al. Role of antioxidant enzymes on ionizing radiation resistance. , 1998, Free radical biology & medicine.
[37] C. Sen,et al. Antioxidant and redox regulation of gene transcription , 1996, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[38] Q. Zhan,et al. Manganese Superoxide Dismutase (SOD2) Inhibits Radiation-Induced Apoptosis by Stabilization of the Mitochondrial Membrane , 2002, Radiation research.
[39] J C Reed,et al. Mitochondria and apoptosis. , 1998, Science.
[40] L. MacMillan-Crow,et al. Manganese superoxide dismutase in disease , 2001, Free radical research.
[41] R. Weichselbaum,et al. Activation of the nuclear transcription factor κB (NFκB) and differential gene expression in U87 glioma cells after exposure to the cytoprotector amifostine , 2002 .
[42] J. Ward,et al. Equilibrium dialysis studies of the binding of radioprotector compounds to DNA. , 1986, Radiation research.