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Interleukin-10 provides direct trophic support to neurons

dc.contributor.authorZhou, Zhigangen_US
dc.contributor.authorPeng, Xiangminen_US
dc.contributor.authorInsolera, Ryanen_US
dc.contributor.authorFink, David J.en_US
dc.contributor.authorMata, Marinaen_US
dc.date.accessioned2010-04-01T14:55:05Z
dc.date.available2010-04-01T14:55:05Z
dc.date.issued2009-09en_US
dc.identifier.citationZhou, Zhigang; Peng, Xiangmin; Insolera, Ryan; Fink, David J.; Mata, Marina (2009). "Interleukin-10 provides direct trophic support to neurons." Journal of Neurochemistry 110(5): 1617-1627. <http://hdl.handle.net/2027.42/65374>en_US
dc.identifier.issn0022-3042en_US
dc.identifier.issn1471-4159en_US
dc.identifier.urihttps://hdl.handle.net/2027.42/65374
dc.identifier.urihttp://www.ncbi.nlm.nih.gov/sites/entrez?cmd=retrieve&db=pubmed&list_uids=19575707&dopt=citationen_US
dc.format.extent769006 bytes
dc.format.extent3110 bytes
dc.format.mimetypeapplication/pdf
dc.format.mimetypetext/plain
dc.publisherBlackwell Publishing Ltden_US
dc.rightsJournal compilation © 2009 International Society for Neurochemistryen_US
dc.subject.otherApoptosisen_US
dc.subject.otherCytokineen_US
dc.subject.otherDevelopmenten_US
dc.subject.otherInterleukin-10en_US
dc.subject.otherNeurotrophinen_US
dc.titleInterleukin-10 provides direct trophic support to neuronsen_US
dc.typeArticleen_US
dc.rights.robotsIndexNoFollowen_US
dc.subject.hlbsecondlevelNeurosciencesen_US
dc.subject.hlbtoplevelHealth Sciencesen_US
dc.description.peerreviewedPeer Revieweden_US
dc.identifier.pmid19575707en_US
dc.description.bitstreamurlhttp://deepblue.lib.umich.edu/bitstream/2027.42/65374/1/j.1471-4159.2009.06263.x.pdf
dc.identifier.doi10.1111/j.1471-4159.2009.06263.xen_US
dc.identifier.sourceJournal of Neurochemistryen_US
dc.identifier.citedreferenceBachis A., Colangelo A. M., Vicini S., Doe P. P., De Bernardi M. A., Brooker G. and Mocchetti I. ( 2001 ) Interleukin-10 prevents glutamate-mediated cerebellar granule cell death by blocking caspase-3-like activity. J. Neurosci. 21, 3104 – 3112.en_US
dc.identifier.citedreferenceBethea J. R., Nagashima H., Acosta M. C., Briceno C., Gomez F., Marcillo A. E., Loor K., Green J. and Dietrich W. D. ( 1999 ) Systemically administered interleukin-10 reduces tumor necrosis factor-alpha production and significantly improves functional recovery following traumatic spinal cord injury in rats. J. Neurotrauma 16, 851 – 863.en_US
dc.identifier.citedreferenceBoyd Z. S., Kriatchko A., Yang J., Agarwal N., Wax M. B. and Patil R. V. ( 2003 ) Interleukin-10 receptor signaling through STAT-3 regulates the apoptosis of retinal ganglion cells in response to stress. Invest. Ophthalmol. Vis. Sci. 44, 5206 – 5211.en_US
dc.identifier.citedreferenceBrewer K. L., Bethea J. R. and Yezierski R. P. ( 1999 ) Neuroprotective effects of interleukin-10 following excitotoxic spinal cord injury. Exp. Neurol. 159, 484 – 493.en_US
dc.identifier.citedreferenceChoi D. W. ( 1988 ) Glutamate neurotoxicity and diseases of the nervous system. Neuron 1, 623 – 634.en_US
dc.identifier.citedreferenceDietrich W. D., Busto R. and Bethea J. R. ( 1999 ) Postischemic hypothermia and IL-10 treatment provide long-lasting neuroprotection of CA1 hippocampus following transient global ischemia in rats. Exp. Neurol. 158, 444 – 450.en_US
dc.identifier.citedreferenceDu Y., Bales K. R., Dodel R. C., Hamilton-Byrd E., Horn J. W., Czilli D. L., Simmons L. K., Ni B. and Paul S. M. ( 1997 ) Activation of a caspase 3-related cysteine protease is required for glutamate-mediated apoptosis of cultured cerebellar granule neurons. Proc. Natl Acad. Sci. USA 94, 11657 – 11662.en_US
dc.identifier.citedreferenceFrei K., Lins H., Schwerdel C. and Fontana A. ( 1994 ) Antigen presentation in the central nervous system. The inhibitory effect of IL-10 on MHC class II expression and production of cytokines depends on the inducing signals and the type of cell analyzed. J. Immunol. 152, 2720 – 2728.en_US
dc.identifier.citedreferenceGrad J. M., Zeng X. R. and Boise L. H. ( 2000 ) Regulation of Bcl-xL: a little bit of this and a little bit of STAT. Curr. Opin. Oncol. 12, 543 – 549.en_US
dc.identifier.citedreferenceHo A. S., Liu Y., Khan T. A., Hsu D. H., Bazan J. F. and Moore K. W. ( 1993 ) A receptor for interleukin 10 is related to interferon receptors. Proc. Natl Acad. Sci. USA 90, 11267 – 11271.en_US
dc.identifier.citedreferenceHoffmann A. and Baltimore D. ( 2006 ) Circuitry of nuclear factor kappaB signaling. Immunol. Rev. 210, 171 – 186.en_US
dc.identifier.citedreferenceHoward M., O’Garra A., Ishida H., de Waal Malefyt R. and de Vries J. ( 1992 ) Biological properties of interleukin 10. J. Clin. Immunol. 12, 239 – 247.en_US
dc.identifier.citedreferenceIsrael A. ( 2000 ) The IKK complex: an integrator of all signals that activate NF-kappaB? Trends Cell Biol. 10, 129 – 133.en_US
dc.identifier.citedreferenceJander S., Pohl J., D’Urso D., Gillen C. and Stoll G. ( 1998 ) Time course and cellular localization of interleukin-10 mRNA and protein expression in autoimmune inflammation of the rat central nervous system. Am. J. Pathol. 152, 975 – 982.en_US
dc.identifier.citedreferenceKassed C. A., Willing A. E., Garbuzova-Davis S., Sanberg P. R. and Pennypacker K. R. ( 2002 ) Lack of NF-kappaB p50 exacerbates degeneration of hippocampal neurons after chemical exposure and impairs learning. Exp. Neurol. 176, 277 – 288.en_US
dc.identifier.citedreferenceKelly A., Lynch A., Vereker E., Nolan Y., Queenan P., Whittaker E., O’Neill L. A. and Lynch M. A. ( 2001 ) The anti-inflammatory cytokine, interleukin (IL)-10, blocks the inhibitory effect of IL-1 beta on long term potentiation. A role for JNK. J. Biol. Chem. 276, 45564 – 45572.en_US
dc.identifier.citedreferenceKluck R. M., Bossy-Wetzel E., Green D. R. and Newmeyer D. D. ( 1997 ) The release of cytochrome c from mitochondria: a primary site for Bcl-2 regulation of apoptosis. Science 275, 1132 – 1136.en_US
dc.identifier.citedreferenceLi P., Nijhawan D., Budihardjo I., Srinivasula S. M., Ahmad M., Alnemri E. S. and Wang X. ( 1997 ) Cytochrome c and dATP-dependent formation of Apaf-1/caspase-9 complex initiates an apoptotic protease cascade. Cell 91, 479 – 489.en_US
dc.identifier.citedreferenceLin Y. Z., Yao S. Y., Veach R. A., Torgerson T. R. and Hawiger J. ( 1995 ) Inhibition of nuclear translocation of transcription factor NF-kappa B by a synthetic peptide containing a cell membrane-permeable motif and nuclear localization sequence. J. Biol. Chem. 270, 14255 – 14258.en_US
dc.identifier.citedreferenceLiu Y., Wei S. H., Ho A. S., de Waal Malefyt R. and Moore K. W. ( 1994 ) Expression cloning and characterization of a human IL-10 receptor. J. Immunol. 152, 1821 – 1829.en_US
dc.identifier.citedreferenceMaggirwar S. B., Sarmiere P. D., Dewhurst S. and Freeman R. S. ( 1998 ) Nerve growth factor-dependent activation of NF-kappaB contributes to survival of sympathetic neurons. J. Neurosci. 18, 10356 – 10365.en_US
dc.identifier.citedreferenceMao X., Moerman A. M., Lucas M. M. and Barger S. W. ( 1999 ) Inhibition of the activity of a neuronal kappaB-binding factor by glutamate. J. Neurochem. 73, 1851 – 1858.en_US
dc.identifier.citedreferenceMassa P. T., Aleyasin H., Park D. S., Mao X. and Barger S. W. ( 2006 ) NF-kappaB in neurons? The uncertainty principle in neurobiology. J. Neurochem. 97, 607 – 618.en_US
dc.identifier.citedreferenceMattson M. P. ( 2005 ) NF-kappaB in the survival and plasticity of neurons. Neurochem. Res. 30, 883 – 893.en_US
dc.identifier.citedreferenceMoore K. W., de Waal Malefyt R., Coffman R. L. and O’Garra A. ( 2001 ) Interleukin-10 and the interleukin-10 receptor. Annu. Rev. Immunol. 19, 683 – 765.en_US
dc.identifier.citedreferenceNamura S., Zhu J., Fink K., Endres M., Srinivasan A., Tomaselli K. J., Yuan J. and Moskowitz M. A. ( 1998 ) Activation and cleavage of caspase-3 in apoptosis induced by experimental cerebral ischemia. J. Neurosci. 18, 3659 – 3668.en_US
dc.identifier.citedreferenceO’Shea J. J. and Murray P. J. ( 2008 ) Cytokine signaling modules in inflammatory responses. Immunity 28, 477 – 487.en_US
dc.identifier.citedreferenceParcellier A., Tintignac L. A., Zhuravleva E. and Hemmings B. A. ( 2008 ) PKB and the mitochondria: AKTing on apoptosis. Cell. Signal. 20, 21 – 30.en_US
dc.identifier.citedreferencePeineau S., Taghibiglou C., Bradley C. et al. ( 2007 ) LTP inhibits LTD in the hippocampus via regulation of GSK3beta. Neuron 53, 703 – 717.en_US
dc.identifier.citedreferencePerkins N. D. and Gilmore T. D. ( 2006 ) Good cop, bad cop: the different faces of NF-kappaB. Cell Death Differ. 13, 759 – 772.en_US
dc.identifier.citedreferenceRodgers E. E. and Theibert A. B. ( 2002 ) Functions of PI 3-kinase in development of the nervous system. Int. J. Dev. Neurosci. 20, 187 – 197.en_US
dc.identifier.citedreferenceRomashkova J. A. and Makarov S. S. ( 1999 ) NF-kappaB is a target of AKT in anti-apoptotic PDGF signalling. Nature 401, 86 – 90.en_US
dc.identifier.citedreferenceShin H. M., Kim M. H., Kim B. H., Jung S. H., Kim Y. S., Park H. J., Hong J. T., Min K. R. and Kim Y. ( 2004 ) Inhibitory action of novel aromatic diamine compound on lipopolysaccharide-induced nuclear translocation of NF-kappaB without affecting IkappaB degradation. FEBS Lett. 571, 50 – 54.en_US
dc.identifier.citedreferenceTobe M., Isobe Y., Tomizawa H., Nagasaki T., Takahashi H., Fukazawa T. and Hayashi H. ( 2003 ) Discovery of quinazolines as a novel structural class of potent inhibitors of NF-kappa B activation. Bioorg. Med. Chem. 11, 383 – 391.en_US
dc.identifier.citedreferenceWeber-Nordt R. M., Henschler R., Schott E., Wehinger J., Behringer D., Mertelsmann R. and Finke J. ( 1996 ) Interleukin-10 increases Bcl-2 expression and survival in primary human CD34 +  hematopoietic progenitor cells. Blood 88, 2549 – 2558.en_US
dc.identifier.citedreferenceWu Y. Y. and Bradshaw R. A. ( 2000 ) Activation of the Stat3 signaling pathway is required for differentiation by interleukin-6 in PC12-E2 cells. J. Biol. Chem. 275, 2147 – 2156.en_US
dc.identifier.citedreferenceYang J., Liu X., Bhalla K., Kim C. N., Ibrado A. M., Cai J., Peng T. I., Jones D. P. and Wang X. ( 1997 ) Prevention of apoptosis by Bcl-2: release of cytochrome c from mitochondria blocked. Science 275, 1129 – 1132.en_US
dc.identifier.citedreferenceYoshimura T., Kawano Y., Arimura N., Kawabata S., Kikuchi A. and Kaibuchi K. ( 2005 ) GSK-3beta regulates phosphorylation of CRMP-2 and neuronal polarity. Cell 120, 137 – 149.en_US
dc.identifier.citedreferenceYu Z., Zhou D., Bruce-Keller A. J., Kindy M. S. and Mattson M. P. ( 1999 ) Lack of the p50 subunit of nuclear factor-kappaB increases the vulnerability of hippocampal neurons to excitotoxic injury. J. Neurosci. 19, 8856 – 8865.en_US
dc.owningcollnameInterdisciplinary and Peer-Reviewed


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