Diverse molecular provocation of programmed cell death.
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[1] Hong-Bing Shu,et al. TRADD–TRAF2 and TRADD–FADD Interactions Define Two Distinct TNF Receptor 1 Signal Transduction Pathways , 1996, Cell.
[2] J. Mallet,et al. Induction of Neuronal Apoptosis by Excitotoxins Associated with Long‐Lasting Increase of 12‐O‐Tetradecanoylphorbol 13‐Acetate‐Responsive Element‐Binding Activity , 1995, Journal of neurochemistry.
[3] S. Orrenius,et al. Lack of Ca2+ involvement in thymocyte apoptosis induced by chelation of intracellular Zn2+. , 1995, Laboratory investigation; a journal of technical methods and pathology.
[4] D. Hockenbery. bcl‐2, a novel reguator of cell death , 1995, BioEssays : news and reviews in molecular, cellular and developmental biology.
[5] R. Danesi,et al. Paclitaxel (taxol) inhibits protein isoprenylation and induces apoptosis in PC-3 human prostate cancer cells. , 1995, Molecular pharmacology.
[6] K. Hirokawa,et al. A novel type of cell death of lymphocytes induced by a monoclonal antibody without participation of complement , 1995, The Journal of experimental medicine.
[7] D. Goeddel,et al. The TNF receptor 1-associated protein TRADD signals cell death and NF-κB activation , 1995, Cell.
[8] M. Oren,et al. cAMP-mediated signals as determinants for apoptosis in primary granulosa cells. , 1995, Experimental cell research.
[9] F. Mollinedo,et al. Intracellular Alkalinization Suppresses Lovastatin-induced Apoptosis in HL-60 Cells through the Inactivation of a pH-dependent Endonuclease (*) , 1995, The Journal of Biological Chemistry.
[10] H. Steller. Mechanisms and genes of cellular suicide , 1995, Science.
[11] Amy S. Lee,et al. Requirement of Tyrosine- and Serine/Threonine Kinases in the Transcriptional Activation of the Mammalian grp78/BiP Promoter by Thapsigargin (*) , 1995, The Journal of Biological Chemistry.
[12] Y. Furuya,et al. Proliferation‐dependent vs. independent programmed cell death of prostatic cancer cells involves distinct gene regulation , 1994, The Prostate.
[13] K. Bhalla,et al. Evidence for involvement of tyrosine phosphorylation in taxol-induced apoptosis in a human ovarian tumor cell line. , 1994, Biochemical pharmacology.
[14] F. Cope,et al. Apoptosis II: The Molecular Basis of Apoptosis in Disease , 1994 .
[15] T. Hoang,et al. Product of the steel locus suppresses apoptosis in hemopoietic cells. Comparison with pathways activated by granulocyte macrophage colony-stimulating factor. , 1994, The Journal of biological chemistry.
[16] Bruce A. Yankner,et al. Pancreatic islet cell toxicity of amylin associated with type-2 diabetes mellitus , 1994, Nature.
[17] S. Bhakdi,et al. Novel path to apoptosis: small transmembrane pores created by staphylococcal alpha-toxin in T lymphocytes evoke internucleosomal DNA degradation , 1994, Infection and immunity.
[18] Terry Farrah,et al. The TNF receptor superfamily of cellular and viral proteins: Activation, costimulation, and death , 1994, Cell.
[19] Verity Ma. Oxidative damage and repair in the developing nervous system. , 1994 .
[20] D. Green,et al. Dicing with death: dissecting the components of the apoptosis machinery. , 1994, Trends in biochemical sciences.
[21] P. Houghton,et al. Preclinical and Clinical Modulation of Anticancer Drugs , 1993 .
[22] J. Cidlowski,et al. Apoptosis: the biochemistry and molecular biology of programmed cell death. , 1993, Endocrine reviews.
[23] John Calvin Reed,et al. Bcl-2 blocks apoptosis in cells lacking mitochondrial DNA , 1993, Nature.
[24] R. Miesfeld,et al. Evidence that glucocorticoid- and cyclic AMP-induced apoptotic pathways in lymphocytes share distal events , 1992, Molecular and cellular biology.
[25] J. Decaprio,et al. Treatment of myeloid leukemic cells with the phosphatase inhibitor okadaic acid induces cell cycle arrest at either G1/S or G2/M depending on dose , 1992, Journal of cellular physiology.
[26] J. Lytton,et al. Thapsigargin inhibits the sarcoplasmic or endoplasmic reticulum Ca-ATPase family of calcium pumps. , 1991, The Journal of biological chemistry.
[27] C. Potten,et al. Further studies on the response of intestinal crypt cells of different hierarchical status to eighteen different cytotoxic agents. , 1987, British Journal of Cancer.
[28] R. Tsien,et al. Cytosolic Ca2+ homeostasis in Ehrlich and Yoshida carcinomas. A new, membrane-permeant chelator of heavy metals reveals that these ascites tumor cell lines have normal cytosolic free Ca2+. , 1985, The Journal of biological chemistry.
[29] A. Wyllie,et al. Chromatin cleavage in apoptosis: Association with condensed chromatin morphology and dependence on macromolecular synthesis , 1984, The Journal of pathology.
[30] A. Wyllie,et al. Apoptosis: A Basic Biological Phenomenon with Wide-ranging Implications in Tissue Kinetics , 1972, British Journal of Cancer.