Target cell lysis by CTL granule exocytosis is independent of ICE/Ced-3 family proteases.
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J. Berzofsky | M. S. Williams | P. Henkart | A. Sarin | M. Alexander-Miller | C. Zacharchuk | Mark S. Williams
[1] P. Henkart,et al. Different Interleukin-1β Converting Enzyme (ICE) Family Protease Requirements for the Apoptotic Death of T Lymphocytes Triggered by Diverse Stimuli , 1996, The Journal of experimental medicine.
[2] S. Srinivasula,et al. The Ced-3/Interleukin 1β Converting Enzyme-like Homolog Mch6 and the Lamin-cleaving Enzyme Mch2α Are Substrates for the Apoptotic Mediator CPP32* , 1996, The Journal of Biological Chemistry.
[3] Junying Yuan,et al. Human ICE/CED-3 Protease Nomenclature , 1996, Cell.
[4] T. Ley,et al. Cleavage of CPP32 by Granzyme B Represents a Critical Role for Granzyme B in the Induction of Target Cell DNA Fragmentation* , 1996, The Journal of Biological Chemistry.
[5] G. Kroemer,et al. Mitochondrial permeability transition is a central coordinating event of apoptosis , 1996, The Journal of experimental medicine.
[6] R. Gottlieb,et al. Loss of Function of Cytochrome c in Jurkat Cells Undergoing Fas-mediated Apoptosis* , 1996, The Journal of Biological Chemistry.
[7] Junying Yuan,et al. Identification and Characterization of Ich-3, a Member of the Interleukin-1β Converting Enzyme (ICE)/Ced-3 Family and an Upstream Regulator of ICE* , 1996, The Journal of Biological Chemistry.
[8] S. Srinivasula,et al. In vitro activation of CPP32 and Mch3 by Mch4, a novel human apoptotic cysteine protease containing two FADD-like domains. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[9] A. Chinnaiyan,et al. ICE-LAP6, a Novel Member of the ICE/Ced-3 Gene Family, Is Activated by the Cytotoxic T Cell Protease Granzyme B* , 1996, The Journal of Biological Chemistry.
[10] A. Chinnaiyan,et al. Cytotoxic T-cell-derived granzyme B activates the apoptotic protease ICE-LAP3 , 1996, Current Biology.
[11] Matthias Mann,et al. FLICE, A Novel FADD-Homologous ICE/CED-3–like Protease, Is Recruited to the CD95 (Fas/APO-1) Death-Inducing Signaling Complex , 1996, Cell.
[12] David Wallach,et al. Involvement of MACH, a Novel MORT1/FADD-Interacting Protease, in Fas/APO-1- and TNF Receptor–Induced Cell Death , 1996, Cell.
[13] M. Raff,et al. Role of Ced-3/ICE-family proteases in staurosporine-induced programmed cell death , 1996, The Journal of cell biology.
[14] D. Danley,et al. D4-GDI, a Substrate of CPP32, Is Proteolyzed during Fas-induced Apoptosis (*) , 1996, Journal of Biological Chemistry.
[15] M. Su,et al. Processing and Activation of CMH-1 by Granzyme B (*) , 1996, The Journal of Biological Chemistry.
[16] D. Green,et al. The cytotoxic cell protease granzyme B initiates apoptosis in a cell‐free system by proteolytic processing and activation of the ICE/CED‐3 family protease, CPP32, via a novel two‐step mechanism. , 1996, The EMBO journal.
[17] G. Salvesen,et al. Proteolytic activation of the cell death protease Yama/CPP32 by granzyme B. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[18] P. Henkart. ICE family proteases: mediators of all apoptotic cell death? , 1996, Immunity.
[19] P. Amiri,et al. Requirement of an ICE-Like Protease for Induction of Apoptosis and Ceramide Generation by REAPER , 1996, Science.
[20] G. Cohen,et al. An interleukin‐1β‐converting enzyme‐like protease is a common mediator of apoptosis in thymocytes , 1995, FEBS letters.
[21] M. Moreno,et al. Bcl-2 blocks glucocorticoid- but not Fas- or activation-induced apoptosis in a T cell hybridoma. , 1995, Journal of immunology.
[22] D. Nicholson,et al. Activation of the apoptotic protease CPP32 by cytotoxic T-cell-derived granzyme B , 1995, Nature.
[23] J. Mankovich,et al. Inhibition of ICE family proteases by baculovirus antiapoptotic protein p35. , 1995, Science.
[24] H. Horvitz,et al. Inhibition of the Caenorhabditis elegans cell-death protease CED-3 by a CED-3 cleavage site in baculovirus p35 protein , 1995, Nature.
[25] T. Ley,et al. Natural killer and lymphokine-activated killer cells require granzyme B for the rapid induction of apoptosis in susceptible target cells. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[26] P. Golstein,et al. The target cell nucleus is not required for cell-mediated granzyme- or Fas-based cytotoxicity , 1995, The Journal of experimental medicine.
[27] P. Henkart,et al. Synergistic roles of granzymes A and B in mediating target cell death by rat basophilic leukemia mast cell tumors also expressing cytolysin/perforin , 1995, The Journal of experimental medicine.
[28] N. Ehrman,et al. The cytotoxic T cell proteinase granzyme B does not activate interleukin-1 beta-converting enzyme. , 1994, The Journal of biological chemistry.
[29] M. S. Williams,et al. Apoptotic cell death induced by intracellular proteolysis. , 1994, Journal of immunology.
[30] P. Henkart. Lymphocyte-mediated cytotoxicity: two pathways and multiple effector molecules. , 1994, Immunity.
[31] Timothy J. Ley,et al. Cytotoxic lymphocytes require granzyme B for the rapid induction of DNA fragmentation and apoptosis in allogeneic target cells , 1994, Cell.
[32] P. Henkart,et al. Cytotoxic lymphocyte granzymes trigger a target cell internal disintegration pathway leading to cytolysis and DNA breakdown. , 1994, Journal of immunology.
[33] P. Golstein,et al. Fas involvement in Ca(2+)-independent T cell-mediated cytotoxicity , 1993, The Journal of experimental medicine.
[34] W. Nishioka,et al. Inhibition of cytotoxic T lymphocyte-induced target cell DNA fragmentation, but not lysis, by inhibitors of DNA topoisomerases I and II , 1992, The Journal of experimental medicine.
[35] R. J. Clem,et al. Prevention of apoptosis by a baculovirus gene during infection of insect cells. , 1991, Science.
[36] J. Cohen,et al. Cytotoxic T lymphocytes induce different types of DNA damage in target cells of different origins. , 1991, Journal of immunology.
[37] E. Shaw,et al. Cysteinyl proteinases and their selective inactivation. , 1990, Advances in enzymology and related areas of molecular biology.
[38] H. Kirschke,et al. The specificity of bovine spleen cathepsin S. A comparison with rat liver cathepsins L and B. , 1989, The Biochemical journal.
[39] D. Segal,et al. Targeting of cytotoxic cells with heterocrosslinked antibodies. , 1988, Cancer investigation.