CXCR2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.

The functional role of ELR-positive CXC chemokines during viral-induced demyelination was assessed. Inoculation of the neuroattenuated JHM strain of mouse hepatitis virus (JHMV) into the CNS of susceptible mice results in an acute encephalomyelitis that evolves into a chronic demyelinating disease,...

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Main Authors: Martin P Hosking, Emanuele Tirotta, Richard M Ransohoff, Thomas E Lane
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-06-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2893165?pdf=render
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spelling doaj-4eb368cb1eb74ca08263a922a62d869c2020-11-25T01:56:04ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-06-0156e1134010.1371/journal.pone.0011340CXCR2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.Martin P HoskingEmanuele TirottaRichard M RansohoffThomas E LaneThe functional role of ELR-positive CXC chemokines during viral-induced demyelination was assessed. Inoculation of the neuroattenuated JHM strain of mouse hepatitis virus (JHMV) into the CNS of susceptible mice results in an acute encephalomyelitis that evolves into a chronic demyelinating disease, modeling white matter pathology observed in the human demyelinating disease Multiple Sclerosis.JHMV infection induced the rapid and sustained expression of transcripts specific for the ELR+ chemokine ligands CXCL1 and CXCL2, as well as their binding receptor CXCR2, which was enriched within the spinal cord during chronic infection. Inhibiting CXCR2 signaling with neutralizing antiserum significantly (p<0.03) delayed clinical recovery. Moreover, CXCR2 neutralization was associated with an increase in the severity of demyelination that was independent of viral recrudescence or modulation of neuroinflammation. Rather, blocking CXCR2 was associated with increased numbers of apoptotic cells primarily within white matter tracts, suggesting that oligodendrocytes were affected. JHMV infection of enriched oligodendrocyte progenitor cell (OPC) cultures revealed that apoptosis was associated with elevated expression of cleaved caspase 3 and muted Bcl-2 expression. Inclusion of CXCL1 within JHMV infected cultures restricted caspase 3 cleavage and increased Bcl-2 expression that was associated with a significant (p<0.001) decrease in apoptosis. CXCR2 deficient oligodendrocytes were refractory to CXCL1 mediated protection from JHMV-induced apoptosis, readily activating caspase 3 and down regulating Bcl-2.These findings highlight a previously unappreciated role for CXCR2 signaling in protecting oligodendrocyte lineage cells from apoptosis during inflammatory demyelination initiated by viral infection of the CNS.http://europepmc.org/articles/PMC2893165?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Martin P Hosking
Emanuele Tirotta
Richard M Ransohoff
Thomas E Lane
spellingShingle Martin P Hosking
Emanuele Tirotta
Richard M Ransohoff
Thomas E Lane
CXCR2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.
PLoS ONE
author_facet Martin P Hosking
Emanuele Tirotta
Richard M Ransohoff
Thomas E Lane
author_sort Martin P Hosking
title CXCR2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.
title_short CXCR2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.
title_full CXCR2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.
title_fullStr CXCR2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.
title_full_unstemmed CXCR2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.
title_sort cxcr2 signaling protects oligodendrocytes and restricts demyelination in a mouse model of viral-induced demyelination.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-06-01
description The functional role of ELR-positive CXC chemokines during viral-induced demyelination was assessed. Inoculation of the neuroattenuated JHM strain of mouse hepatitis virus (JHMV) into the CNS of susceptible mice results in an acute encephalomyelitis that evolves into a chronic demyelinating disease, modeling white matter pathology observed in the human demyelinating disease Multiple Sclerosis.JHMV infection induced the rapid and sustained expression of transcripts specific for the ELR+ chemokine ligands CXCL1 and CXCL2, as well as their binding receptor CXCR2, which was enriched within the spinal cord during chronic infection. Inhibiting CXCR2 signaling with neutralizing antiserum significantly (p<0.03) delayed clinical recovery. Moreover, CXCR2 neutralization was associated with an increase in the severity of demyelination that was independent of viral recrudescence or modulation of neuroinflammation. Rather, blocking CXCR2 was associated with increased numbers of apoptotic cells primarily within white matter tracts, suggesting that oligodendrocytes were affected. JHMV infection of enriched oligodendrocyte progenitor cell (OPC) cultures revealed that apoptosis was associated with elevated expression of cleaved caspase 3 and muted Bcl-2 expression. Inclusion of CXCL1 within JHMV infected cultures restricted caspase 3 cleavage and increased Bcl-2 expression that was associated with a significant (p<0.001) decrease in apoptosis. CXCR2 deficient oligodendrocytes were refractory to CXCL1 mediated protection from JHMV-induced apoptosis, readily activating caspase 3 and down regulating Bcl-2.These findings highlight a previously unappreciated role for CXCR2 signaling in protecting oligodendrocyte lineage cells from apoptosis during inflammatory demyelination initiated by viral infection of the CNS.
url http://europepmc.org/articles/PMC2893165?pdf=render
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