HIF prolyl hydroxylase inhibitors prevent neuronal death induced by mitochondrial toxins: therapeutic implications for Huntington's disease and Alzheimer's disease.
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Giovanni Coppola | G. Coppola | R. Ratan | Rajiv R Ratan | Zoya Niatsetskaya | Manuela Basso | Rachel E Speer | Stephen J McConoughey | Thong C Ma | Z. Niatsetskaya | Stephen J. McConoughey | M. Basso | R. Speer | T. Ma
[1] F. González-Sastre,et al. Assay of succinate dehydrogenase activity by a colorimetric-continuous method using iodonitrotetrazolium chloride as electron acceptor. , 1993, Analytical biochemistry.
[2] Brian Keith,et al. Differential Roles of Hypoxia-Inducible Factor 1α (HIF-1α) and HIF-2α in Hypoxic Gene Regulation , 2003, Molecular and Cellular Biology.
[3] M. Gassmann,et al. Epolones induce erythropoietin expression via hypoxia-inducible factor-1α activation , 2000 .
[4] P. Ratcliffe. HIF-1 and HIF-2: working alone or together in hypoxia? , 2007, The Journal of clinical investigation.
[5] M. MacDonald,et al. Dominant phenotypes produced by the HD mutation in STHdh(Q111) striatal cells. , 2000, Human molecular genetics.
[6] P. Ratcliffe,et al. HIF prolyl hydroxylases in the rat; organ distribution and changes in expression following hypoxia and coronary artery ligation. , 2006, Journal of molecular and cellular cardiology.
[7] Michael I. Wilson,et al. Targeting of HIF-α to the von Hippel-Lindau Ubiquitylation Complex by O2-Regulated Prolyl Hydroxylation , 2001, Science.
[8] B. Hyman,et al. Neurochemical and histologic characterization of striatal excitotoxic lesions produced by the mitochondrial toxin 3-nitropropionic acid , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[9] S. Luquet,et al. Thermoregulatory and metabolic defects in Huntington's disease transgenic mice implicate PGC-1alpha in Huntington's disease neurodegeneration. , 2006, Cell metabolism.
[10] O. Andreassen,et al. Creatine Increases Survival and Delays Motor Symptoms in a Transgenic Animal Model of Huntington's Disease , 2001, Neurobiology of Disease.
[11] D. Blum,et al. 3‐Nitropropionic acid: a mitochondrial toxin to uncover physiopathological mechanisms underlying striatal degeneration in Huntington's disease , 2005, Journal of neurochemistry.
[12] G. Semenza. Oxygen-dependent regulation of mitochondrial respiration by hypoxia-inducible factor 1. , 2007, The Biochemical journal.
[13] Jiandie D. Lin,et al. Suppression of Reactive Oxygen Species and Neurodegeneration by the PGC-1 Transcriptional Coactivators , 2006, Cell.
[14] Mauro Delorenzi,et al. Mutant huntingtin's effects on striatal gene expression in mice recapitulate changes observed in human Huntington's disease brain and do not differ with mutant huntingtin length or wild-type huntingtin dosage. , 2007, Human molecular genetics.
[15] R. Ratan,et al. Antioxidants, HIF prolyl hydroxylase inhibitors or short interfering RNAs to BNIP3 or PUMA, can prevent prodeath effects of the transcriptional activator, HIF-1alpha, in a mouse hippocampal neuronal line. , 2008, Antioxidants & redox signaling.
[16] G. Semenza,et al. Protection from Oxidative Stress–Induced Apoptosis in Cortical Neuronal Cultures by Iron Chelators Is Associated with Enhanced DNA Binding of Hypoxia-Inducible Factor-1 and ATF-1/CREB and Increased Expression of Glycolytic Enzymes, p21waf1/cip1, and Erythropoietin , 1999, The Journal of Neuroscience.
[17] J. Cha,et al. Transcriptional signatures in Huntington's disease , 2007, Progress in Neurobiology.
[18] T. Murphy,et al. Immature cortical neurons are uniquely sensitive to glutamate toxicity by inhibition of cystine uptake , 1990, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[19] M. MacDonald,et al. Striatal cells from mutant huntingtin knock-in mice are selectively vulnerable to mitochondrial complex II inhibitor-induced cell death through a non-apoptotic pathway. , 2004, Human molecular genetics.
[20] Dimitri Krainc,et al. Transcriptional Repression of PGC-1α by Mutant Huntingtin Leads to Mitochondrial Dysfunction and Neurodegeneration , 2006, Cell.
[21] J. LaManna,et al. Hypoxia-inducible Factor Prolyl 4-Hydroxylase Inhibition , 2005, Journal of Biological Chemistry.
[22] J. LaManna,et al. Prosurvival and Prodeath Effects of Hypoxia-inducible Factor-1α Stabilization in a Murine Hippocampal Cell Line* , 2005, Journal of Biological Chemistry.
[23] Y. Yang,et al. Induction of hypoxia inducible factor‐1 attenuates metabolic insults induced by 3‐nitropropionic acid in rat C6 glioma cells , 2005, Journal of neurochemistry.
[24] D. Guidolin,et al. Transcriptional regulation of hypoxia-inducible factor 1alpha by HIPK2 suggests a novel mechanism to restrain tumor growth. , 2009, Biochimica et biophysica acta.
[25] G. D’Orazi,et al. Inhibition of HIF-1alpha activity by homeodomain-interacting protein kinase-2 correlates with sensitization of chemoresistant cells to undergo apoptosis , 2009, Molecular Cancer.
[26] M. Ivan,et al. HIFα Targeted for VHL-Mediated Destruction by Proline Hydroxylation: Implications for O2 Sensing , 2001, Science.
[27] Jiandie D. Lin,et al. Defects in Adaptive Energy Metabolism with CNS-Linked Hyperactivity in PGC-1α Null Mice , 2004, Cell.
[28] Michael I. Wilson,et al. C. elegans EGL-9 and Mammalian Homologs Define a Family of Dioxygenases that Regulate HIF by Prolyl Hydroxylation , 2001, Cell.
[29] Bruce R. Rosen,et al. Neuroprotective Effects of Creatine and Cyclocreatine in Animal Models of Huntington’s Disease , 1998, The Journal of Neuroscience.
[30] A. Hamby,et al. Clioquinol down-regulates mutant huntingtin expression in vitro and mitigates pathology in a Huntington's disease mouse model. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[31] S. Browne,et al. Mitochondria and Huntington's Disease Pathogenesis , 2008, Annals of the New York Academy of Sciences.
[32] G. Semenza,et al. HIF-1-mediated expression of pyruvate dehydrogenase kinase: a metabolic switch required for cellular adaptation to hypoxia. , 2006, Cell metabolism.
[33] K. Majamaa,et al. Partial identity of the 2-oxoglutarate and ascorbate binding sites of prolyl 4-hydroxylase. , 1986, The Journal of biological chemistry.
[34] G. Johnson,et al. Mitochondrial Respiration and ATP Production Are Significantly Impaired in Striatal Cells Expressing Mutant Huntingtin* , 2005, Journal of Biological Chemistry.
[35] David G. Watson,et al. Succinate links TCA cycle dysfunction to oncogenesis by inhibiting HIF-alpha prolyl hydroxylase. , 2005, Cancer cell.
[36] A. Rego,et al. Mechanisms of neurodegeneration in Huntington’s disease , 2008, European Journal of Neuroscience.
[37] D. Geschwind,et al. Small Molecule Activation of Adaptive Gene Expression , 2008, Annals of the New York Academy of Sciences.