CD437, a synthetic retinoid, induces apoptosis in human respiratory epithelial cells via caspase-independent mitochondrial and caspase-8-dependent pathways both up-regulated by JNK signaling pathway.
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[1] U. Reichert,et al. Retinoids induce Fas(CD95) ligand cell surface expression via RARγ and nur77 in T cells , 2004, European journal of immunology.
[2] M. Pfahl,et al. Retinoid targets for apoptosis induction , 2003, Oncogene.
[3] R. Mohammad,et al. Identification and Characterization of a Cell Cycle and Apoptosis Regulatory Protein-1 as a Novel Mediator of Apoptosis Signaling by Retinoid CD437* , 2003, Journal of Biological Chemistry.
[4] Eugene M. Johnson,et al. JNK-Mediated BIM Phosphorylation Potentiates BAX-Dependent Apoptosis , 2003, Neuron.
[5] P. Taimen,et al. NuMA and nuclear lamins behave differently in Fas-mediated apoptosis , 2003, Journal of Cell Science.
[6] P. Collas,et al. HA95 and LAP2β mediate a novel chromatin–nuclear envelope interaction implicated in initiation of DNA replication , 2003, The Journal of Cell Biology.
[7] D. Soprano,et al. Elucidation of Molecular Events Mediating Induction of Apoptosis by Synthetic Retinoids Using a CD437-resistant Ovarian Carcinoma Cell Line* , 2002, The Journal of Biological Chemistry.
[8] J. Martinou,et al. Membrane perturbations induced by the apoptotic Bax protein. , 2002, The Biochemical journal.
[9] R. Mohammad,et al. Induction of apoptosis of human B-CLL and ALL cells by a novel retinoid and its nonretinoidal analog. , 2002, Blood.
[10] J. Ménissier-de murcia,et al. Active Caspase-8 Translocates into the Nucleus of Apoptotic Cells to Inactivate Poly(ADP-ribose) Polymerase-2* , 2002, The Journal of Biological Chemistry.
[11] David S. Park,et al. Apoptosis-inducing factor is involved in the regulation of caspase-independent neuronal cell death , 2002, The Journal of cell biology.
[12] M. Kirschner,et al. Cyclin B and E2F-1 expression in prostate carcinoma cells treated with the novel retinoid CD437 are regulated by the ubiquitin-mediated pathway. , 2002, Cancer research.
[13] C. Schamberger,et al. Proteome analysis of nuclear matrix proteins during apoptotic chromatin condensation , 2002, Cell Death and Differentiation.
[14] F. Martinon,et al. Overexpression of Helicard, a CARD-Containing Helicase Cleaved during Apoptosis, Accelerates DNA Degradation , 2002, Current Biology.
[15] R. Lotan,et al. The synthetic retinoid CD437 selectively induces apoptosis in human lung cancer cells while sparing normal human lung epithelial cells. , 2002, Cancer research.
[16] G. Kroemer,et al. Apoptosis-inducing factor (AIF): a novel caspase-independent death effector released from mitochondria. , 2002, Biochimie.
[17] John Calvin Reed,et al. Role of Bcl-2 Family Members in Caspase-Independent Apoptosis during Chlamydia Infection , 2002, Infection and Immunity.
[18] M. Pfahl,et al. Retinoid-related molecules induce cytochrome c release and apoptosis through activation of c-Jun NH(2)-terminal kinase/p38 mitogen-activated protein kinases. , 2001, Cancer research.
[19] O. Houcine,et al. Effects of retinoic acid receptor-selective agonists on human nasal epithelial cell differentiation. , 2001, American journal of respiratory cell and molecular biology.
[20] G. Kroemer,et al. Adenine nucleotide translocator mediates the mitochondrial membrane permeabilization induced by lonidamine, arsenite and CD437 , 2001, Oncogene.
[21] T. Eberlein,et al. Retinoic acid receptor-independent mechanism of apoptosis of melanoma cells by the retinoid CD437 (AHPN) , 2001, Cell Death and Differentiation.
[22] J. Harmon,et al. Synthetic retinoid CD437 induces apoptosis of esophageal squamous HET-1A cells through the caspase-3-dependent pathway. , 2001, Anticancer research.
[23] Michael J. Holtzman,et al. Electronics, People, and the Art of Publication , 2001 .
[24] M. Dawson,et al. Induction of Egr-1 expression by the retinoid AHPN in human lung carcinoma cells is dependent on activated ERK1/2 , 2001, Cell Death and Differentiation.
[25] M. DiFiglia,et al. Pro-caspase-8 Is Predominantly Localized in Mitochondria and Released into Cytoplasm upon Apoptotic Stimulation* , 2001, The Journal of Biological Chemistry.
[26] C. Fages,et al. Effects of a novel synthetic retinoid on malignant glioma in vitro: inhibition of cell proliferation, induction of apoptosis and differentiation. , 2001, European journal of cancer.
[27] R. Lotan,et al. Synthetic retinoid CD437 promotes rapid apoptosis in malignant human epidermal keratinocytes and G1 arrest in their normal counterparts , 2001, Journal of cellular physiology.
[28] W. Hong,et al. Augmentation of tumor necrosis factor-related apoptosis-inducing ligand (TRAIL)-induced apoptosis by the synthetic retinoid 6-[3-(1-adamantyl)-4-hydroxyphenyl]-2-naphthalene carboxylic acid (CD437) through up-regulation of TRAIL receptors in human lung cancer cells. , 2000, Cancer research.
[29] M. Dawson,et al. Induction of apoptosis in ovarian carcinoma cells by AHPN/CD437 is mediated by retinoic acid receptors , 2000, Journal of cellular physiology.
[30] R. Lotan,et al. Implication of multiple mechanisms in apoptosis induced by the synthetic retinoid CD437 in human prostate carcinoma cells , 2000, Oncogene.
[31] R. Lotan,et al. Dual mechanisms of action of the retinoid CD437: nuclear retinoic acid receptor-mediated suppression of squamous differentiation and receptor-independent induction of apoptosis in UMSCC22B human head and neck squamous cell carcinoma cells. , 2000, Molecular pharmacology.
[32] A. Rishi,et al. Identification of a unique binding protein specific for a novel retinoid inducing cellular apoptosis , 2000, International journal of cancer.
[33] U. Reichert,et al. Isolation and characterization of an acute promyelocytic leukemia cell line selectively resistant to the novel antileukemic and apoptogenic retinoid 6-[3-adamantyl-4-hydroxyphenyl]-2-naphthalene carboxylic acid. , 2000, Blood.
[34] O. Houcine,et al. Differential effects of several retinoid receptor-selective ligands on squamous differentiation and apoptosis in airway epithelial cells , 2000, Cell and Tissue Research.
[35] Guido Kroemer,et al. Mitochondrio‐nuclear translocation of AIF in apoptosis and necrosis , 2000, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[36] M. Cohen,et al. Review: nuclear lamins--structural proteins with fundamental functions. , 2000, Journal of structural biology.
[37] A. Rishi,et al. S-phase arrest and apoptosis induced in normal mammary epithelial cells by a novel retinoid. , 2000, Cancer research.
[38] J. Martinou,et al. Bid Induces the Oligomerization and Insertion of Bax into the Outer Mitochondrial Membrane , 2000, Molecular and Cellular Biology.
[39] B. Joseph,et al. The novel retinoid 6-[3-(1-adamantyl)-4-hydroxyphenyl]-2-naphtalene carboxylic acid can trigger apoptosis through a mitochondrial pathway independent of the nucleus. , 1999, Cancer research.
[40] S. Hsu,et al. Involvement of cyclin-dependent kinase activities in CD437-induced apoptosis. , 1999, Experimental cell research.
[41] H. Thé,et al. In acute promyelocytic leukemia NB4 cells, the synthetic retinoid CD437 induces contemporaneously apoptosis, a caspase-3-mediated degradation of PML/RARα protein and the PML retargeting on PML-nuclear bodies , 1999, Leukemia.
[42] R. Lotan,et al. Mechanisms of apoptosis induced by the synthetic retinoid CD437 in human non-small cell lung carcinoma cells , 1999, Oncogene.
[43] U. Reichert,et al. The RARgamma selective agonist CD437 inhibits gastric cell growth through the mechanism of apoptosis. , 1999, Cancer letters.
[44] Crafford A. Harris,et al. Roles of LAP2 Proteins in Nuclear Assembly and DNA Replication: Truncated LAP2β Proteins Alter Lamina Assembly, Envelope Formation, Nuclear Size, and DNA Replication Efficiency in Xenopus laevis Extracts , 1999, The Journal of cell biology.
[45] Jean-Claude Martinou,et al. Bid-induced Conformational Change of Bax Is Responsible for Mitochondrial Cytochrome c Release during Apoptosis , 1999, The Journal of cell biology.
[46] M. Sheikh,et al. Activation of the p38 and JNK/SAPK mitogen-activated protein kinase pathways during apoptosis is mediated by a novel retinoid. , 1999, Experimental cell research.
[47] M. Dawson,et al. Synthetic retinoid CD437 induces S‐phase arrest and apoptosis in human prostate cancer cells LNCaP and PC‐3 , 1999, The Prostate.
[48] U. Reichert,et al. The Novel Synthetic Retinoid 6-(3-adamantyl-4-hydroxyphenyl)-2-naphthalene Carboxylic Acid (CD437) Causes Apoptosis in Acute Promyelocytic Leukemia Cells Through Rapid Activation of Caspases , 1999 .
[49] R. Lotan,et al. Differential responses of normal, premalignant, and malignant human bronchial epithelial cells to receptor-selective retinoids. , 1999, Clinical cancer research : an official journal of the American Association for Cancer Research.
[50] S. Korsmeyer,et al. Regulated Targeting of BAX to Mitochondria , 1998, The Journal of cell biology.
[51] G. Cohen,et al. Caspase-independent cell death induced by anti-CD2 or staurosporine in activated human peripheral T lymphocytes. , 1998, Journal of immunology.
[52] J C Reed,et al. Mitochondria and apoptosis. , 1998, Science.
[53] John Calvin Reed,et al. Molecular Determinants of AHPN (CD437)-Induced Growth Arrest and Apoptosis in Human Lung Cancer Cell Lines , 1998, Molecular and Cellular Biology.
[54] B. Harvat,et al. Inhibition of cell proliferation and induction of apoptosis by the retinoid AHPN in human lung carcinoma cells. , 1998, American journal of respiratory cell and molecular biology.
[55] Yi-Te Hsu,et al. Movement of Bax from the Cytosol to Mitochondria during Apoptosis , 1997, The Journal of cell biology.
[56] L. Gerace,et al. Lamin-binding Fragment of LAP2 Inhibits Increase in Nuclear Volume during the Cell Cycle and Progression into S Phase , 1997, The Journal of cell biology.
[57] R. Lotan,et al. Induction of apoptosis in human non‐small cell lung carcinoma cells by the novel synthetic retinoid CD437 , 1997, Journal of cellular physiology.
[58] R. Lotan,et al. Differential effects of synthetic nuclear retinoid receptor-selective retinoids on the growth of human non-small cell lung carcinoma cells. , 1997, Cancer research.
[59] G Waksman,et al. Comparison of the ion channel characteristics of proapoptotic BAX and antiapoptotic BCL-2. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[60] T. Eberlein,et al. Specific Activation of Retinoic Acid Receptors (RARs) and Retinoid X Receptors Reveals a Unique Role for RARγ in Induction of Differentiation and Apoptosis of S91 Melanoma Cells* , 1997, The Journal of Biological Chemistry.
[61] A. Rishi,et al. Retinoid induced apoptosis in leukemia cells through a retinoic acid nuclear receptor-independent pathway. , 1997, Blood.
[62] U. Reichert,et al. Induction of apoptosis by retinoids and retinoic acid receptor gamma-selective compounds in mouse thymocytes through a novel apoptosis pathway. , 1997, Molecular pharmacology.
[63] K. Weber,et al. Cleavage of the nuclear matrix protein NuMA during apoptosis. , 1997, Experimental cell research.
[64] Y. Hsu,et al. Cytosol-to-membrane redistribution of Bax and Bcl-X(L) during apoptosis. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[65] A. Rishi,et al. Bcl-XLExpression and Its Downregulation by a Novel Retinoid in Breast Carcinoma Cells , 1997 .
[66] R. Lotan,et al. Rapid induction of apoptosis in human C33A cervical carcinoma cells by the synthetic retinoid 6‐[3‐(1‐adamantyl)hydroxyphenyl]‐2‐naphtalene carboxylic acid (CD437) , 1997, International journal of cancer.
[67] D. Schadendorf,et al. Treatment of melanoma cells with the synthetic retinoid CD437 induces apoptosis via activation of AP-1 in vitro, and causes growth inhibition in xenografts in vivo , 1996, The Journal of cell biology.
[68] John Calvin Reed,et al. Structure-function comparisons of the proapoptotic protein Bax in yeast and mammalian cells , 1996, Molecular and cellular biology.
[69] G. Kroemer,et al. Sequential reduction of mitochondrial transmembrane potential and generation of reactive oxygen species in early programmed cell death , 1995, The Journal of experimental medicine.
[70] G. Fröschl,et al. Chromatin condensation during apoptosis is accompanied by degradation of lamin A+B, without enhanced activation of cdc2 kinase , 1994, The Journal of cell biology.
[71] B. Shroot,et al. Identification of synthetic retinoids with selectivity for human nuclear retinoic acid receptor gamma. , 1992, Biochemical and biophysical research communications.
[72] R. Spanjaard,et al. The apoptotic action of the retinoid CD437/AHPN: diverse effects, common basis. , 2003, Journal of biomedical science.
[73] B. Wittig,et al. Proliferation-dependent induction of apoptosis by the retinoid CD437 in p53-mutated keratinocytes , 2001, Journal of Molecular Medicine.
[74] U. Reichert,et al. Growth-inhibitory effects of the synthetic retinoid CD437 against ovarian carcinoma models in vitro and in vivo , 1998, Cancer Chemotherapy and Pharmacology.
[75] D. Schadendorf,et al. Effects of various synthetic retinoids on proliferation and immunophenotype of human melanoma cells in vitro. , 1995, Recent results in cancer research. Fortschritte der Krebsforschung. Progres dans les recherches sur le cancer.