Nuclear factor-kB (NF-kB) is a family of DNA-binding proteins that are important regulators involved in immune and inflammatory responses, as well as in cell survival and apoptosis. In the nervous system NF-kB is activated under physiological and pathological conditions including learning and memory mechanisms and neurodegenerative diseases. NF-kB is activated in neurons in response to excitotoxic, metabolic and oxidative stress and there is a body of evidence to suggest that glutamate induces NF-kB by the main ionotropic glutamate receptors. In the present study, 3 nitroproprionic acid (3NP), an irreversible inhibitor of succinate dehydrogenase (SD, complex II) has been employed to provide an experimental model of Huntington's disease (HD). Specifically, we described 3NP-induced activation of NF-kB and of iNOS and nNOS genes in striatal treated slices. To aim to better understand the relationship between these identified dysregulated genes and mitochondrial dysfunction, we investigated in SK-N-MC human neuroblastoma cells following 3NP treatment, whether NF-kB nuclear translocation and activation might be involved in the mechanisms by which 3NP leads to transcriptional activation of NOS genes. These results are relevant to more precisely define the role of NF-kB in neuronal cells and better understand its putative involvement in neurodegeneration.

Napolitano, M., Zei, D., Centonze, D., Palermo, R., Bernardi, G., Vacca, A., et al. (2008). NF-kB/NOS cross-talk induced by mitochondrial complex II inhibition: implications for Huntington's disease. NEUROSCIENCE LETTERS, 434(3), 241-246 [10.1016/j.neulet.2007.09.056].

NF-kB/NOS cross-talk induced by mitochondrial complex II inhibition: implications for Huntington's disease

CENTONZE, DIEGO;BERNARDI, GIORGIO;CALABRESI, PAOLO;
2008-04-04

Abstract

Nuclear factor-kB (NF-kB) is a family of DNA-binding proteins that are important regulators involved in immune and inflammatory responses, as well as in cell survival and apoptosis. In the nervous system NF-kB is activated under physiological and pathological conditions including learning and memory mechanisms and neurodegenerative diseases. NF-kB is activated in neurons in response to excitotoxic, metabolic and oxidative stress and there is a body of evidence to suggest that glutamate induces NF-kB by the main ionotropic glutamate receptors. In the present study, 3 nitroproprionic acid (3NP), an irreversible inhibitor of succinate dehydrogenase (SD, complex II) has been employed to provide an experimental model of Huntington's disease (HD). Specifically, we described 3NP-induced activation of NF-kB and of iNOS and nNOS genes in striatal treated slices. To aim to better understand the relationship between these identified dysregulated genes and mitochondrial dysfunction, we investigated in SK-N-MC human neuroblastoma cells following 3NP treatment, whether NF-kB nuclear translocation and activation might be involved in the mechanisms by which 3NP leads to transcriptional activation of NOS genes. These results are relevant to more precisely define the role of NF-kB in neuronal cells and better understand its putative involvement in neurodegeneration.
4-apr-2008
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore MED/26 - NEUROLOGIA
English
Con Impact Factor ISI
Transcriptional Activation; Propionic Acids; Oxidative Stress; Rats, Wistar; Nitric Oxide Synthase Type II; Succinate Dehydrogenase; Rats; Electron Transport Complex II; Animals; Nitro Compounds; Huntington Disease; Humans; Cell Line, Tumor; Organ Culture Techniques; Enzyme Inhibitors; Nitric Oxide Synthase; Nitric Oxide Synthase Type I; Active Transport, Cell Nucleus; NF-kappa B; Gene Expression Regulation, Enzymologic
Napolitano, M., Zei, D., Centonze, D., Palermo, R., Bernardi, G., Vacca, A., et al. (2008). NF-kB/NOS cross-talk induced by mitochondrial complex II inhibition: implications for Huntington's disease. NEUROSCIENCE LETTERS, 434(3), 241-246 [10.1016/j.neulet.2007.09.056].
Napolitano, M; Zei, D; Centonze, D; Palermo, R; Bernardi, G; Vacca, A; Calabresi, P; Gulino, A
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/41479
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