New Views on the Misconstrued: Executioner Caspases and Their Diverse Non-apoptotic Roles
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[1] K. Haas,et al. Interactions between mitochondria and the transcription factor myocyte enhancer factor 2 (MEF2) regulate neuronal structural and functional plasticity and metaplasticity , 2015, The Journal of physiology.
[2] D. Ehrnhoefer,et al. Partial rescue of some features of Huntington Disease in the genetic absence of caspase-6 in YAC128 mice , 2015, Neurobiology of Disease.
[3] L. Parajuli,et al. Heterosynaptic structural plasticity on local dendritic segments of hippocampal CA1 neurons. , 2015, Cell reports.
[4] P. Barker,et al. Production and isolation of axons from sensory neurons for biochemical analysis using porous filters. , 2014, Journal of visualized experiments : JoVE.
[5] Cynthia D. Duggan,et al. Genetic Analysis Reveals that Amyloid Precursor Protein and Death Receptor 6 Function in the Same Pathway to Control Axonal Pruning Independent of β-Secretase , 2014, The Journal of Neuroscience.
[6] M. Yaylaoglu,et al. A Death Receptor 6-Amyloid Precursor Protein Pathway Regulates Synapse Density in the Mature CNS But Does Not Contribute to Alzheimer's Disease-Related Pathophysiology in Murine Models , 2014, The Journal of Neuroscience.
[7] T. Kuwana,et al. Apoptosis Regulation at the Mitochondrial Outer Membrane , 2014, Journal of cellular biochemistry.
[8] A. Motoyama,et al. Multiple pathways are involved in DNA degradation during keratinocyte terminal differentiation , 2014, Cell Death and Disease.
[9] Li Zhou,et al. Caspase-3 cleavage of dishevelled induces elimination of postsynaptic structures. , 2014, Developmental cell.
[10] T. T. Su,et al. Dying Cells Protect Survivors from Radiation-Induced Cell Death in Drosophila , 2014, PLoS genetics.
[11] Ali Ertürk,et al. Local Pruning of Dendrites and Spines by Caspase-3-Dependent and Proteasome-Limited Mechanisms , 2014, The Journal of Neuroscience.
[12] R. Anwyl,et al. Enhancement of long-term depression by soluble amyloid β protein in rat hippocampus is mediated by metabotropic glutamate receptor and involves activation of p38MAPK, STEP and caspase-3 , 2013, Neuroscience.
[13] H. Okamoto,et al. Local caspase activation interacts with Slit-Robo signaling to restrict axonal arborization , 2013, The Journal of cell biology.
[14] G. Dewson,et al. Building blocks of the apoptotic pore: how Bax and Bak are activated and oligomerize during apoptosis , 2013, Cell Death and Differentiation.
[15] C. Gilbert,et al. Death Receptor 6 Regulates Adult Experience-Dependent Cortical Plasticity , 2013, The Journal of Neuroscience.
[16] S. Markey,et al. The Novel Caspase-3 Substrate Gap43 is Involved in AMPA Receptor Endocytosis and Long-Term Depression* , 2013, Molecular & Cellular Proteomics.
[17] N. Unsain,et al. XIAP regulates caspase activity in degenerating axons. , 2013, Cell reports.
[18] C. Akey,et al. Tango7 directs cellular remodeling by the Drosophila apoptosome. , 2013, Genes & development.
[19] E. Fuchs,et al. Sept4/ARTS Regulates Stem Cell Apoptosis and Skin Regeneration , 2013, Science.
[20] M. Sheng,et al. Phosphorylation of Threonine-19 of PSD-95 by GSK-3β is Required for PSD-95 Mobilization and Long-Term Depression , 2013, The Journal of Neuroscience.
[21] W. Greenough,et al. Motor Skill Training Induces Coordinated Strengthening and Weakening between Neighboring Synapses , 2013, The Journal of Neuroscience.
[22] A. Him,et al. Two distinct types of dying back axonal degeneration in vitro , 2013, Neuropathology and applied neurobiology.
[23] J. Ramsey,et al. Distinct Pathways Mediate Axon Degeneration during Apoptosis and Axon-Specific Pruning , 2013, Nature Communications.
[24] David R McIlwain,et al. Caspase functions in cell death and disease. , 2013, Cold Spring Harbor perspectives in biology.
[25] Anatol C. Kreitzer,et al. Physiological Brain Activity Causes DNA Double Strand Breaks in Neurons — Exacerbation by Amyloid-β , 2013, Nature Neuroscience.
[26] Karen Zito,et al. Synapse-specific and size-dependent mechanisms of spine structural plasticity accompanying synaptic weakening , 2012, Proceedings of the National Academy of Sciences.
[27] O. Arancio,et al. Caspase-9 mediates synaptic plasticity and memory deficits of Danish dementia knock-in mice: caspase-9 inhibition provides therapeutic protection , 2012, Molecular Neurodegeneration.
[28] D. O'Leary,et al. A Caspase Cascade Regulating Developmental Axon Degeneration , 2012, The Journal of Neuroscience.
[29] Simon X. Chen,et al. The Transcription Factor MEF2 Directs Developmental Visually Driven Functional and Structural Metaplasticity , 2012, Cell.
[30] C. Widmann,et al. Caspase-3 Protects Stressed Organs against Cell Death , 2012, Molecular and Cellular Biology.
[31] J. Hardy,et al. Zinc-mediated Allosteric Inhibition of Caspase-6* , 2012, The Journal of Biological Chemistry.
[32] A. Bergmann,et al. The role of apoptosis-induced proliferation for regeneration and cancer. , 2012, Cold Spring Harbor perspectives in biology.
[33] G. Bates,et al. Caspase-6 does not contribute to the proteolysis of mutant huntingtin in the HdhQ150 knock-in mouse model of Huntington’s disease , 2012, PLoS currents.
[34] J. Hardy,et al. Mechanism of zinc‐mediated inhibition of caspase‐9 , 2012, Protein science : a publication of the Protein Society.
[35] G. Morata,et al. Compensatory proliferation and apoptosis-induced proliferation: a need for clarification , 2012, Cell Death and Differentiation.
[36] Pasi I. Tuunanen,et al. Caspase-6 Activity in a BACHD Mouse Modulates Steady-State Levels of Mutant Huntingtin Protein But Is Not Necessary for Production of a 586 Amino Acid Proteolytic Fragment , 2012, The Journal of Neuroscience.
[37] Aravinthan D. T. Samuel,et al. The Core Apoptotic Executioner Proteins CED-3 and CED-4 Promote Initiation of Neuronal Regeneration in Caenorhabditis elegans , 2012, PLoS biology.
[38] R. Pietro. Editorial [Hot Topic: Stem Cells and Tissue Regeneration (Executive Guest Editor: Roberta Di Pietro)] , 2012 .
[39] L. D’Adamio,et al. Inhibition of γ-secretase worsens memory deficits in a genetically congruous mouse model of Danish dementia , 2012, Molecular Neurodegeneration.
[40] B. Hyman,et al. Distinct Dendritic Spine and Nuclear Phases of Calcineurin Activation after Exposure to Amyloid-β Revealed by a Novel Fluorescence Resonance Energy Transfer Assay , 2012, The Journal of Neuroscience.
[41] J. Hardy,et al. Phosphorylation regulates assembly of the caspase-6 substrate-binding groove. , 2012, Structure.
[42] Y. Gao,et al. Inhibitory Mechanism of Caspase-6 Phosphorylation Revealed by Crystal Structures, Molecular Dynamics Simulations, and Biochemical Assays* , 2012, The Journal of Biological Chemistry.
[43] P. Newmark,et al. The cell biology of regeneration , 2012, The Journal of cell biology.
[44] A. Strasser,et al. BH3-only proteins in apoptosis at a glance , 2012, Journal of Cell Science.
[45] O. Arancio,et al. β- but not γ-secretase proteolysis of APP causes synaptic and memory deficits in a mouse model of dementia , 2012, Molecular Neurodegeneration.
[46] Simone Fulda,et al. Targeting IAP proteins for therapeutic intervention in cancer , 2012, Nature Reviews Drug Discovery.
[47] M. Sheng,et al. NMDA receptors and BAX are essential for Aβ impairment of LTP , 2012, Scientific Reports.
[48] M. Miura,et al. Live imaging of apoptosis in a novel transgenic mouse highlights its role in neural tube closure , 2011, The Journal of cell biology.
[49] Qiang Sun,et al. IκB Kinase ε-Dependent Phosphorylation and Degradation of X-Linked Inhibitor of Apoptosis Sensitizes Cells to Virus-Induced Apoptosis , 2011, Journal of Virology.
[50] M. Holcik,et al. IRES-mediated translation of cellular messenger RNA operates in eIF2α- independent manner during stress , 2011, Nucleic acids research.
[51] M. Hinds,et al. CARD-mediated autoinhibition of cIAP1's E3 ligase activity suppresses cell proliferation and migration. , 2011, Molecular cell.
[52] Song Jiao,et al. Nonapoptotic Function of BAD and BAX in Long-Term Depression of Synaptic Transmission , 2011, Neuron.
[53] E. Hallberg,et al. Anchored FRET sensors detect local caspase activation prior to neuronal degeneration , 2011, Molecular Neurodegeneration.
[54] J. Hardy,et al. Mechanism of a Genetically Encoded Dark-to-Bright Reporter for Caspase Activity* , 2011, The Journal of Biological Chemistry.
[55] G. Collingridge,et al. Aβ1–42 inhibition of LTP is mediated by a signaling pathway involving caspase-3, Akt1 and GSK-3β , 2011, Nature Neuroscience.
[56] Kristen M Harris,et al. Coordination of size and number of excitatory and inhibitory synapses results in a balanced structural plasticity along mature hippocampal CA1 dendrites during LTP , 2011, Hippocampus.
[57] M. Gorospe,et al. RNA-binding protein HuR mediates cytoprotection through stimulation of XIAP translation , 2011, Oncogene.
[58] P. Meier,et al. To fight or die - inhibitor of apoptosis proteins at the crossroad of innate immunity and death. , 2010, Current opinion in cell biology.
[59] L. Raymond,et al. Cleavage at the 586 Amino Acid Caspase-6 Site in Mutant huntingtin Influences Caspase-6 Activation In Vivo , 2010, The Journal of Neuroscience.
[60] Oleg Simakov,et al. Expression of secreted Wnt pathway components reveals unexpected complexity of the planarian amputation response. , 2010, Developmental biology.
[61] B. Leavitt,et al. Phosphorylation of Huntingtin at Ser421 in YAC128 Neurons Is Associated with Protection of YAC128 Neurons from NMDA-Mediated Excitotoxicity and Is Modulated by PP1 and PP2A , 2010, The Journal of Neuroscience.
[62] Andreas Bergmann,et al. Apoptosis, Stem Cells, and Tissue Regeneration , 2010, Science Signaling.
[63] M. Schachner,et al. Clustering of the Neural Cell Adhesion Molecule (NCAM) at the Neuronal Cell Surface Induces Caspase-8- and -3-dependent Changes of the Spectrin Meshwork Required for NCAM-mediated Neurite Outgrowth* , 2010, The Journal of Biological Chemistry.
[64] Zhiming He,et al. Apoptotic caspases regulate induction of iPSCs from human fibroblasts. , 2010, Cell stem cell.
[65] L. Megeney,et al. Parole terms for a killer , 2010, Cell cycle.
[66] S. Lipton,et al. Transnitrosylation of XIAP regulates caspase-dependent neuronal cell death. , 2010, Molecular cell.
[67] S. Hamada,et al. Maturation of the olfactory sensory neurons by Apaf-1/caspase-9–mediated caspase activity , 2010, Proceedings of the National Academy of Sciences.
[68] M. Sheng,et al. Caspase-3 Activation via Mitochondria Is Required for Long-Term Depression and AMPA Receptor Internalization , 2010, Cell.
[69] Fang Li,et al. Apoptotic Cells Activate the “Phoenix Rising” Pathway to Promote Wound Healing and Tissue Regeneration , 2010, Science Signaling.
[70] Tara Spires-Jones,et al. Amyloid β Induces the Morphological Neurodegenerative Triad of Spine Loss, Dendritic Simplification, and Neuritic Dystrophies through Calcineurin Activation , 2010, The Journal of Neuroscience.
[71] F. Dilworth,et al. Caspase 3/caspase-activated DNase promote cell differentiation by inducing DNA strand breaks , 2010, Proceedings of the National Academy of Sciences.
[72] A. Bush,et al. Cognitive Loss in Zinc Transporter-3 Knock-Out Mice: A Phenocopy for the Synaptic and Memory Deficits of Alzheimer's Disease? , 2010, The Journal of Neuroscience.
[73] D. Green,et al. Cell death and tissue remodeling in planarian regeneration. , 2010, Developmental biology.
[74] J. Hwang,et al. Endogenous Zinc Mediates Apoptotic Programmed Cell Death in the Developing Brain , 2010, Neurotoxicity Research.
[75] L. Raymond,et al. Early Increase in Extrasynaptic NMDA Receptor Signaling and Expression Contributes to Phenotype Onset in Huntington's Disease Mice , 2010, Neuron.
[76] Xiaohua Douglas Zhang,et al. Inhibition of Calcineurin-mediated Endocytosis and α-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid (AMPA) Receptors Prevents Amyloid β Oligomer-induced Synaptic Disruption , 2009, The Journal of Biological Chemistry.
[77] A. Bush,et al. Zinc in the physiology and pathology of the CNS , 2009, Nature Reviews Neuroscience.
[78] K. Haas,et al. Metaplasticity Governs Natural Experience-Driven Plasticity of Nascent Embryonic Brain Circuits , 2009, Neuron.
[79] J. Martinou,et al. Apoptotic cells provide an unexpected source of Wnt3 signaling to drive hydra head regeneration. , 2009, Developmental cell.
[80] M. Butterworth,et al. The E3 Ubiquitin Ligase cIAP1 Binds and Ubiquitinates Caspase-3 and -7 via Unique Mechanisms at Distinct Steps in Their Processing* , 2009, Journal of Biological Chemistry.
[81] U. Ernsberger. Role of neurotrophin signalling in the differentiation of neurons from dorsal root ganglia and sympathetic ganglia , 2009, Cell and Tissue Research.
[82] J. Troncoso,et al. S-nitrosylation of XIAP compromises neuronal survival in Parkinson's disease , 2009, Proceedings of the National Academy of Sciences.
[83] J. Qi,et al. Amyloid β‐protein fragments 25–35 and 31–35 potentiate long‐term depression in hippocampal CA1 region of rats in vivo , 2009, Synapse.
[84] Marc Tessier-Lavigne,et al. APP binds DR6 to trigger axon pruning and neuron death via distinct caspases , 2009, Nature.
[85] P. Clarke,et al. DYRK1A phosphorylates caspase 9 at an inhibitory site and is potently inhibited in human cells by harmine , 2008, The FEBS journal.
[86] H. Fearnhead,et al. A non-apoptotic role for caspase-9 in muscle differentiation , 2008, Journal of Cell Science.
[87] H. Ryoo,et al. Regulation of the Drosophila Apoptosome through Feedback Inhibition , 2008, Nature Cell Biology.
[88] Junying Yuan,et al. Caspases in apoptosis and beyond , 2008, Oncogene.
[89] M. Zvelebil,et al. IAPs contain an evolutionarily conserved ubiquitin-binding domain that regulates NF-κB as well as cell survival and oncogenesis , 2008, Nature Cell Biology.
[90] C. Duckett,et al. Inhibitor of apoptosis proteins in eukaryotic evolution and development: a model of thematic conservation. , 2008, Developmental cell.
[91] B. Tharakan,et al. Caspases - an update. , 2008, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[92] Shaomin Li,et al. Amyloid-β protein dimers isolated directly from Alzheimer's brains impair synaptic plasticity and memory , 2008, Nature Medicine.
[93] M. Kyba,et al. Caspase activity mediates the differentiation of embryonic stem cells. , 2008, Cell stem cell.
[94] S. Karlsson,et al. Hematopoietic stem cell responsiveness to exogenous signals is limited by caspase-3. , 2008, Cell stem cell.
[95] M. Hayden,et al. Prevention of depressive behaviour in the YAC128 mouse model of Huntington disease by mutation at residue 586 of huntingtin. , 2008, Brain : a journal of neurology.
[96] H. Steller,et al. Regulation of apoptosis in Drosophila , 2008, Cell Death and Differentiation.
[97] Robert E Campbell,et al. Fluorescent protein FRET pairs for ratiometric imaging of dual biosensors , 2008, Nature Methods.
[98] G. Collingridge,et al. The role of GSK‐3 in synaptic plasticity , 2008, British journal of pharmacology.
[99] E. Mancini,et al. The Docking Interaction of Caspase-9 with ERK2 Provides a Mechanism for the Selective Inhibitory Phosphorylation of Caspase-9 at Threonine 125* , 2008, Journal of Biological Chemistry.
[100] V. Nikitin,et al. Synapse-specific plasticity in command neurons during learning of edible snails under the action of caspase inhibitors , 2007, Bulletin of Experimental Biology and Medicine.
[101] K. Nader,et al. eIF2α Phosphorylation Bidirectionally Regulates the Switch from Short- to Long-Term Synaptic Plasticity and Memory , 2007, Cell.
[102] N. Sjakste,et al. Possible involvement of DNA strand breaks in regulation of cell differentiation. , 2007, European journal of histochemistry : EJH.
[103] Honglin Luo,et al. Apoptosis repressor with caspase recruitment domain (ARC) inhibits myogenic differentiation , 2007, FEBS letters.
[104] D. Clayton,et al. Dynamic Role of Postsynaptic Caspase-3 and BIRC4 in Zebra Finch Song-Response Habituation , 2006, Neuron.
[105] R. Malinow,et al. AMPAR Removal Underlies Aβ-Induced Synaptic Depression and Dendritic Spine Loss , 2006, Neuron.
[106] Darren W. Williams,et al. Local caspase activity directs engulfment of dendrites during pruning , 2006, Nature Neuroscience.
[107] A. Bergmann,et al. Cytochrome c‐d regulates developmental apoptosis in the Drosophila retina , 2006, EMBO reports.
[108] Masatomo Kobayashi,et al. Drosophila IKK-Related Kinase Regulates Nonapoptotic Function of Caspases via Degradation of IAPs , 2006, Cell.
[109] R. Ueda,et al. IKKɛ Regulates F Actin Assembly and Interacts with Drosophila IAP1 in Cellular Morphogenesis , 2006, Current Biology.
[110] Y. Jan,et al. Identification of E2/E3 Ubiquitinating Enzymes and Caspase Activity Regulating Drosophila Sensory Neuron Dendrite Pruning , 2006, Neuron.
[111] L. Raymond,et al. Cleavage at the Caspase-6 Site Is Required for Neuronal Dysfunction and Degeneration Due to Mutant Huntingtin , 2006, Cell.
[112] M. Mattson,et al. Evidence that caspase‐1 is a negative regulator of AMPA receptor‐mediated long‐term potentiation at hippocampal synapses , 2006, Journal of neurochemistry.
[113] A. Bergmann,et al. The two Drosophila cytochrome C proteins can function in both respiration and caspase activation , 2006, The EMBO journal.
[114] P. Balaban,et al. Caspase‐like activity is essential for long‐term synaptic plasticity in the terrestrial snail Helix , 2006, The European journal of neuroscience.
[115] P. Clarke,et al. Regulation of Caspase 9 through Phosphorylation by Protein Kinase C Zeta in Response to Hyperosmotic Stress , 2005, Molecular and Cellular Biology.
[116] H. Okano,et al. Drosophila caspase transduces Shaggy/GSK‐3β kinase activity in neural precursor development , 2005, The EMBO journal.
[117] S. Brunette,et al. Neural stem cell differentiation is dependent upon endogenous caspase‐3 activity , 2005, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[118] R. Anwyl,et al. Synaptic plasticity disruption by amyloid beta protein: modulation by potential Alzheimer's disease modifying therapies. , 2005, Biochemical Society transactions.
[119] P. Clarke,et al. Protein Kinase A Regulates Caspase-9 Activation by Apaf-1 Downstream of Cytochrome c* , 2005, Journal of Biological Chemistry.
[120] David L. Vaux,et al. IAPs, RINGs and ubiquitylation , 2005, Nature Reviews Molecular Cell Biology.
[121] K. Manova,et al. The Sept4 septin locus is required for sperm terminal differentiation in mice. , 2005, Developmental cell.
[122] Patrick S Daugherty,et al. Evolutionary optimization of fluorescent proteins for intracellular FRET , 2005, Nature Biotechnology.
[123] G. Salvesen,et al. XIAP inhibits caspase‐3 and ‐7 using two binding sites: evolutionarily conserved mechanism of IAPs , 2005, The EMBO journal.
[124] J. Fawcett,et al. Axonal Protein Synthesis and Degradation Are Necessary for Efficient Growth Cone Regeneration , 2005, The Journal of Neuroscience.
[125] Mu-ming Poo,et al. Shrinkage of Dendritic Spines Associated with Long-Term Depression of Hippocampal Synapses , 2004, Neuron.
[126] T. Bonhoeffer,et al. Bidirectional Activity-Dependent Morphological Plasticity in Hippocampal Neurons , 2004, Neuron.
[127] G. Salvesen,et al. The protein structures that shape caspase activity, specificity, activation and inhibition. , 2004, The Biochemical journal.
[128] Sebastian Brandner,et al. Neuroprotective Role of the Reaper-Related Serine Protease HtrA2/Omi Revealed by Targeted Deletion in Mice , 2004, Molecular and Cellular Biology.
[129] H. Esumi,et al. Regulation of caspase-6 and FLIP by the AMPK family member ARK5 , 2004, Oncogene.
[130] C. Cowan,et al. Caspase‐3 and caspase‐9 mediate developmental apoptosis in the mouse olfactory system , 2004, The Journal of comparative neurology.
[131] M. Wiedmann,et al. Caspase-3 has a nonapoptotic function in erythroid maturation. , 2004, Blood.
[132] M. Hayden,et al. Inhibition of Calpain Cleavage of Huntingtin Reduces Toxicity , 2004, Journal of Biological Chemistry.
[133] Yigong Shi,et al. Molecular mechanisms of DrICE inhibition by DIAP1 and removal of inhibition by Reaper, Hid and Grim , 2004, Nature Structural &Molecular Biology.
[134] Chunying Du,et al. Smac/DIABLO Selectively Reduces the Levels of c-IAP1 and c-IAP2 but Not That of XIAP and Livin in HeLa Cells* , 2004, Journal of Biological Chemistry.
[135] Asaf Rotem,et al. The mitochondrial ARTS protein promotes apoptosis through targeting XIAP , 2004, The EMBO journal.
[136] M. Albert,et al. Early Aβ accumulation and progressive synaptic loss, gliosis, and tangle formation in AD brain , 2004, Neurology.
[137] Yigong Shi,et al. Multiple Apoptotic Caspase Cascades Are Required in Nonapoptotic Roles for Drosophila Spermatid Individualization , 2003, PLoS biology.
[138] S. Srinivasula,et al. Loss of Omi mitochondrial protease activity causes the neuromuscular disorder of mnd2 mutant mice , 2003, Nature.
[139] I. Kudryashov,et al. Caspase activity is essential for long‐term potentiation , 2003, Journal of neuroscience research.
[140] N. Cheong,et al. Inhibitor of Apoptosis Proteins Are Substrates for the Mitochondrial Serine Protease Omi/HtrA2* , 2003, Journal of Biological Chemistry.
[141] T. Lanz,et al. Dendritic spine loss in the hippocampus of young PDAPP and Tg2576 mice and its prevention by the ApoE2 genotype , 2003, Neurobiology of Disease.
[142] P. Clarke,et al. Inhibition of caspase-9 through phosphorylation at Thr 125 by ERK MAPK , 2003, Nature Cell Biology.
[143] Jinyu Ren,et al. Omi/HtrA2 catalytic cleavage of inhibitor of apoptosis (IAP) irreversibly inactivates IAPs and facilitates caspase activity in apoptosis. , 2003, Genes & development.
[144] C. Holt,et al. Apoptotic Pathway and MAPKs Differentially Regulate Chemotropic Responses of Retinal Growth Cones , 2003, Neuron.
[145] S. Srinivasula,et al. Mechanism of XIAP-mediated inhibition of caspase-9. , 2003, Molecular cell.
[146] Roberto Malinow,et al. PKA phosphorylation of AMPA receptor subunits controls synaptic trafficking underlying plasticity , 2003, Nature Neuroscience.
[147] A. Miyawaki,et al. Spatio-temporal activation of caspase revealed by indicator that is insensitive to environmental effects , 2003, The Journal of cell biology.
[148] F. Barone,et al. Caspase 3 activation is essential for neuroprotection in preconditioning , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[149] R. Slack,et al. Caspase 3 activity is required for skeletal muscle differentiation , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[150] H. Steller,et al. The DIAP1 RING finger mediates ubiquitination of Dronc and is indispensable for regulating apoptosis , 2002, Nature Cell Biology.
[151] G. Salvesen,et al. IAP proteins: blocking the road to death's door , 2002, Nature reviews. Molecular cell biology.
[152] John T. Finn,et al. Axonal Self-Destruction and Neurodegeneration , 2002, Science.
[153] S. Lowe,et al. Generation and Characterization of Smac/DIABLO-Deficient Mice , 2002, Molecular and Cellular Biology.
[154] Sharad Kumar,et al. The role of cytochrome c in caspase activation in Drosophila melanogaster cells , 2002, The Journal of cell biology.
[155] John Calvin Reed,et al. Caspases 3 and 9 Send a Pro-Apoptotic Signal from Synapse to Cell Body in Olfactory Receptor Neurons , 2001, The Journal of Neuroscience.
[156] H. Nakayama,et al. A serine protease, HtrA2, is released from the mitochondria and interacts with XIAP, inducing cell death. , 2001, Molecular cell.
[157] R. Takahashi,et al. Ubiquitin-protein ligase activity of X-linked inhibitor of apoptosis protein promotes proteasomal degradation of caspase-3 and enhances its anti-apoptotic effect in Fas-induced cell death , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[158] S. Srinivasula,et al. Structural Basis of Caspase-7 Inhibition by XIAP , 2001, Cell.
[159] R. Liddington,et al. Structural Basis for the Inhibition of Caspase-3 by XIAP , 2001, Cell.
[160] G. Mills,et al. XIAP regulates Akt activity and caspase-3-dependent cleavage during cisplatin-induced apoptosis in human ovarian epithelial cancer cells. , 2001, Cancer research.
[161] R. Anwyl,et al. Use-Dependent Effects of Amyloidogenic Fragments of β-Amyloid Precursor Protein on Synaptic Plasticity in Rat Hippocampus In Vivo , 2001, The Journal of Neuroscience.
[162] Mark von Zastrow,et al. Regulation of AMPA receptor endocytosis by a signaling mechanism shared with LTD , 2000, Nature Neuroscience.
[163] P. Vandenabeele,et al. Epidermal differentiation does not involve the pro-apoptotic executioner caspases, but is associated with caspase-14 induction and processing , 2000, Cell Death and Differentiation.
[164] Stephanie Birkey Reffey,et al. A novel mitochondrial septin-like protein, ARTS, mediates apoptosis dependent on its P-loop motif , 2000, Nature Cell Biology.
[165] Stephen W. Fesik,et al. NMR Structure and Mutagenesis of the Third Bir Domain of the Inhibitor of Apoptosis Protein XIAP* , 2000, The Journal of Biological Chemistry.
[166] C. Southan,et al. Characterization of human HtrA2, a novel serine protease involved in the mammalian cellular stress response. , 2000, European journal of biochemistry.
[167] T. Hunter,et al. The inhibitor of apoptosis, cIAP2, functions as a ubiquitin-protein ligase and promotes in vitro monoubiquitination of caspases 3 and 7. , 2000, The Journal of biological chemistry.
[168] P. Dash,et al. Caspase activity plays an essential role in long‐term memory , 2000, Neuroreport.
[169] K. Wang,et al. Caspase-mediated proteolytic activation of calcineurin in thapsigargin-mediated apoptosis in SH-SY5Y neuroblastoma cells. , 2000, Archives of biochemistry and biophysics.
[170] Yili Yang,et al. Ubiquitin protein ligase activity of IAPs and their degradation in proteasomes in response to apoptotic stimuli. , 2000, Science.
[171] M. Raff,et al. Evidence That Wallerian Degeneration and Localized Axon Degeneration Induced by Local Neurotrophin Deprivation Do Not Involve Caspases , 2000, The Journal of Neuroscience.
[172] H. Steller,et al. Induction of apoptosis by Drosophila reaper, hid and grim through inhibition of IAP function , 2000, The EMBO journal.
[173] K. White,et al. Diverse domains of THREAD/DIAP1 are required to inhibit apoptosis induced by REAPER and HID in Drosophila. , 2000, Genetics.
[174] R. Flavell,et al. Caspase knockouts: matters of life and death , 1999, Cell Death and Differentiation.
[175] Stephen W. Fesik,et al. NMR structure and mutagenesis of the inhibitor-of-apoptosis protein XIAP , 1999, Nature.
[176] J. Stamler,et al. NO: an inhibitor of cell death , 1999, Cell Death and Differentiation.
[177] Antony Rodriguez,et al. Dark is a Drosophila homologue of Apaf-1/CED-4 and functions in an evolutionarily conserved death pathway , 1999, Nature Cell Biology.
[178] M. Mattson,et al. Evidence for caspase‐mediated cleavage of AMPA receptor subunits in neuronal apoptosis and Alzheimer's disease , 1999 .
[179] M. Zeng,et al. Fas-induced caspase denitrosylation. , 1999, Science.
[180] J C Reed,et al. Ca2+-induced apoptosis through calcineurin dephosphorylation of BAD. , 1999, Science.
[181] B. Hay,et al. A cloning method to identify caspases and their regulators in yeast: identification of Drosophila IAP1 as an inhibitor of the Drosophila caspase DCP-1. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[182] D. Payan,et al. Detection of programmed cell death using fluorescence energy transfer. , 1998, Nucleic acids research.
[183] M. Raff,et al. A Role for Caspases in Lens Fiber Differentiation , 1998, The Journal of cell biology.
[184] S. Lipton,et al. Suppression of neuronal apoptosis by S-nitrosylation of caspases , 1997, Neuroscience Letters.
[185] Massimo Scanziani,et al. Role of intercellular interactions in heterosynaptic long-term depression , 1996, Nature.
[186] E. Masliah,et al. Synaptic and neuritic alterations during the progression of Alzheimer's disease , 1994, Neuroscience Letters.
[187] Shai Shaham,et al. The C. elegans cell death gene ced-3 encodes a protein similar to mammalian interleukin-1β-converting enzyme , 1993, Cell.
[188] R. Malenka,et al. The influence of prior synaptic activity on the induction of long-term potentiation. , 1992, Science.
[189] M. Poo,et al. Activity-dependent synaptic competition in vitro: heterosynaptic suppression of developing synapses. , 1991, Science.
[190] J. Truman,et al. Metamorphosis of the central nervous system of Drosophila. , 1990, Journal of neurobiology.
[191] T. Tuñón,et al. Neuronal alterations in patients with dementia: a Golgi study on biopsy samples , 1990, Neuroscience Letters.
[192] J. Penney,et al. Abnormalities of striatal projection neurons and N-methyl-D-aspartate receptors in presymptomatic Huntington's disease. , 1990, The New England journal of medicine.
[193] R. Ferrante,et al. Neuropathological Classification of Huntington's Disease , 1985, Journal of neuropathology and experimental neurology.
[194] D. Ehrnhoefer,et al. Caspase-6-Resistant Mutant Huntingtin Does not Rescue the Toxic Effects of Caspase-Cleavable Mutant Huntingtin in vivo. , 2012, Journal of Huntington's disease.
[195] A. Bacci,et al. Caspase-3 triggers early synaptic dysfunction in a mouse model of Alzheimer's disease , 2011, Nature Neuroscience.
[196] C. Duckett,et al. XIAP as a ubiquitin ligase in cellular signaling , 2010, Cell Death and Differentiation.
[197] Wei R. Chen,et al. Intravital Imaging of Tumor Apoptosis with FRET Probes During Tumor Therapy , 2009, Molecular Imaging and Biology.
[198] E. Johnson,et al. ‘Men are but worms:’⋆ neuronal cell death in C. elegans and vertebrates , 2004, Cell Death and Differentiation.
[199] From bloodjournal.hematologylibrary.org at PENN STATE UNIVERSITY on February 20, 2013. For personal use , 2002 .
[200] M. Mattson,et al. Direct cleavage of AMPA receptor subunit GluR1 and suppression of AMPA currents by caspase-3 , 2002, NeuroMolecular Medicine.
[201] F. Moody-Corbett. Formation of the vertebrate neuromuscular junction. , 1986, Developmental biology.