author_facet Kim, Hyun-Ju
DiBernardo, Allitia B.
Sloane, Jacob A.
Rasband, Matthew N.
Solomon, David
Kosaras, Bela
Kwak, Seung P.
Vartanian, Timothy K.
Kim, Hyun-Ju
DiBernardo, Allitia B.
Sloane, Jacob A.
Rasband, Matthew N.
Solomon, David
Kosaras, Bela
Kwak, Seung P.
Vartanian, Timothy K.
author Kim, Hyun-Ju
DiBernardo, Allitia B.
Sloane, Jacob A.
Rasband, Matthew N.
Solomon, David
Kosaras, Bela
Kwak, Seung P.
Vartanian, Timothy K.
spellingShingle Kim, Hyun-Ju
DiBernardo, Allitia B.
Sloane, Jacob A.
Rasband, Matthew N.
Solomon, David
Kosaras, Bela
Kwak, Seung P.
Vartanian, Timothy K.
The Journal of Neuroscience
WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
General Neuroscience
author_sort kim, hyun-ju
spelling Kim, Hyun-Ju DiBernardo, Allitia B. Sloane, Jacob A. Rasband, Matthew N. Solomon, David Kosaras, Bela Kwak, Seung P. Vartanian, Timothy K. 0270-6474 1529-2401 Society for Neuroscience General Neuroscience http://dx.doi.org/10.1523/jneurosci.4921-05.2006 <jats:p>Myelin formation involves the outgrowth of an oligodendrocyte cell process that can be regarded as a giant lamellipodium because it is an actively growing structure with extruded cytoplasm. The actin cytoskeleton is critical to morphogenesis, but little is known about regulation of actin dynamics in oligodendrocytes. Wiskott-Aldrich syndrome protein family verprolin homologous (WAVE) proteins mediate lamellipodia formation; thus, we asked whether these proteins function in oligodendrocyte process formation and myelination. Here, we show that WAVE1 is expressed by oligodendrocytes and localizes to the lamella leading edge where actin polymerization is actively regulated. CNS WAVE1 expression increases at the onset of myelination. Expression of dominant-negative WAVE1 impaired process outgrowth and lamellipodia formation in cultured oligodendrocytes. Similarly, oligodendrocytes isolated from mice lacking WAVE1 had fewer processes compared with controls, whereas neurons and astrocytes exhibited normal morphology. In white matter of WAVE1−/− mice, we found regional hypomyelination in the corpus callosum and to a lesser extent in the optic nerve. In optic nerve from WAVE1−/− mice, there were fewer nodes of Ranvier but nodal morphology was normal, implicating a defect in myelin formation. Our<jats:italic>in vitro</jats:italic>findings support a developmentally dynamic and cell-autonomous role for WAVE1 in regulating process formation in oligodendrocytes. Additionally, WAVE1 function during CNS myelination appears to be linked to regional cues. Although its loss can be compensated for in many CNS regions, WAVE1 is clearly required for normal amounts of myelin to form in corpus callosum and optic nerve. Together, these data demonstrate a role for WAVE1 in oligodendrocyte morphogenesis and myelination.</jats:p> WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination The Journal of Neuroscience
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title WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_unstemmed WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_full WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_fullStr WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_full_unstemmed WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_short WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_sort wave1 is required for oligodendrocyte morphogenesis and normal cns myelination
topic General Neuroscience
url http://dx.doi.org/10.1523/jneurosci.4921-05.2006
publishDate 2006
physical 5849-5859
description <jats:p>Myelin formation involves the outgrowth of an oligodendrocyte cell process that can be regarded as a giant lamellipodium because it is an actively growing structure with extruded cytoplasm. The actin cytoskeleton is critical to morphogenesis, but little is known about regulation of actin dynamics in oligodendrocytes. Wiskott-Aldrich syndrome protein family verprolin homologous (WAVE) proteins mediate lamellipodia formation; thus, we asked whether these proteins function in oligodendrocyte process formation and myelination. Here, we show that WAVE1 is expressed by oligodendrocytes and localizes to the lamella leading edge where actin polymerization is actively regulated. CNS WAVE1 expression increases at the onset of myelination. Expression of dominant-negative WAVE1 impaired process outgrowth and lamellipodia formation in cultured oligodendrocytes. Similarly, oligodendrocytes isolated from mice lacking WAVE1 had fewer processes compared with controls, whereas neurons and astrocytes exhibited normal morphology. In white matter of WAVE1−/− mice, we found regional hypomyelination in the corpus callosum and to a lesser extent in the optic nerve. In optic nerve from WAVE1−/− mice, there were fewer nodes of Ranvier but nodal morphology was normal, implicating a defect in myelin formation. Our<jats:italic>in vitro</jats:italic>findings support a developmentally dynamic and cell-autonomous role for WAVE1 in regulating process formation in oligodendrocytes. Additionally, WAVE1 function during CNS myelination appears to be linked to regional cues. Although its loss can be compensated for in many CNS regions, WAVE1 is clearly required for normal amounts of myelin to form in corpus callosum and optic nerve. Together, these data demonstrate a role for WAVE1 in oligodendrocyte morphogenesis and myelination.</jats:p>
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author Kim, Hyun-Ju, DiBernardo, Allitia B., Sloane, Jacob A., Rasband, Matthew N., Solomon, David, Kosaras, Bela, Kwak, Seung P., Vartanian, Timothy K.
author_facet Kim, Hyun-Ju, DiBernardo, Allitia B., Sloane, Jacob A., Rasband, Matthew N., Solomon, David, Kosaras, Bela, Kwak, Seung P., Vartanian, Timothy K., Kim, Hyun-Ju, DiBernardo, Allitia B., Sloane, Jacob A., Rasband, Matthew N., Solomon, David, Kosaras, Bela, Kwak, Seung P., Vartanian, Timothy K.
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container_title The Journal of Neuroscience
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description <jats:p>Myelin formation involves the outgrowth of an oligodendrocyte cell process that can be regarded as a giant lamellipodium because it is an actively growing structure with extruded cytoplasm. The actin cytoskeleton is critical to morphogenesis, but little is known about regulation of actin dynamics in oligodendrocytes. Wiskott-Aldrich syndrome protein family verprolin homologous (WAVE) proteins mediate lamellipodia formation; thus, we asked whether these proteins function in oligodendrocyte process formation and myelination. Here, we show that WAVE1 is expressed by oligodendrocytes and localizes to the lamella leading edge where actin polymerization is actively regulated. CNS WAVE1 expression increases at the onset of myelination. Expression of dominant-negative WAVE1 impaired process outgrowth and lamellipodia formation in cultured oligodendrocytes. Similarly, oligodendrocytes isolated from mice lacking WAVE1 had fewer processes compared with controls, whereas neurons and astrocytes exhibited normal morphology. In white matter of WAVE1−/− mice, we found regional hypomyelination in the corpus callosum and to a lesser extent in the optic nerve. In optic nerve from WAVE1−/− mice, there were fewer nodes of Ranvier but nodal morphology was normal, implicating a defect in myelin formation. Our<jats:italic>in vitro</jats:italic>findings support a developmentally dynamic and cell-autonomous role for WAVE1 in regulating process formation in oligodendrocytes. Additionally, WAVE1 function during CNS myelination appears to be linked to regional cues. Although its loss can be compensated for in many CNS regions, WAVE1 is clearly required for normal amounts of myelin to form in corpus callosum and optic nerve. Together, these data demonstrate a role for WAVE1 in oligodendrocyte morphogenesis and myelination.</jats:p>
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spelling Kim, Hyun-Ju DiBernardo, Allitia B. Sloane, Jacob A. Rasband, Matthew N. Solomon, David Kosaras, Bela Kwak, Seung P. Vartanian, Timothy K. 0270-6474 1529-2401 Society for Neuroscience General Neuroscience http://dx.doi.org/10.1523/jneurosci.4921-05.2006 <jats:p>Myelin formation involves the outgrowth of an oligodendrocyte cell process that can be regarded as a giant lamellipodium because it is an actively growing structure with extruded cytoplasm. The actin cytoskeleton is critical to morphogenesis, but little is known about regulation of actin dynamics in oligodendrocytes. Wiskott-Aldrich syndrome protein family verprolin homologous (WAVE) proteins mediate lamellipodia formation; thus, we asked whether these proteins function in oligodendrocyte process formation and myelination. Here, we show that WAVE1 is expressed by oligodendrocytes and localizes to the lamella leading edge where actin polymerization is actively regulated. CNS WAVE1 expression increases at the onset of myelination. Expression of dominant-negative WAVE1 impaired process outgrowth and lamellipodia formation in cultured oligodendrocytes. Similarly, oligodendrocytes isolated from mice lacking WAVE1 had fewer processes compared with controls, whereas neurons and astrocytes exhibited normal morphology. In white matter of WAVE1−/− mice, we found regional hypomyelination in the corpus callosum and to a lesser extent in the optic nerve. In optic nerve from WAVE1−/− mice, there were fewer nodes of Ranvier but nodal morphology was normal, implicating a defect in myelin formation. Our<jats:italic>in vitro</jats:italic>findings support a developmentally dynamic and cell-autonomous role for WAVE1 in regulating process formation in oligodendrocytes. Additionally, WAVE1 function during CNS myelination appears to be linked to regional cues. Although its loss can be compensated for in many CNS regions, WAVE1 is clearly required for normal amounts of myelin to form in corpus callosum and optic nerve. Together, these data demonstrate a role for WAVE1 in oligodendrocyte morphogenesis and myelination.</jats:p> WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination The Journal of Neuroscience
spellingShingle Kim, Hyun-Ju, DiBernardo, Allitia B., Sloane, Jacob A., Rasband, Matthew N., Solomon, David, Kosaras, Bela, Kwak, Seung P., Vartanian, Timothy K., The Journal of Neuroscience, WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination, General Neuroscience
title WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_full WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_fullStr WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_full_unstemmed WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_short WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
title_sort wave1 is required for oligodendrocyte morphogenesis and normal cns myelination
title_unstemmed WAVE1 Is Required for Oligodendrocyte Morphogenesis and Normal CNS Myelination
topic General Neuroscience
url http://dx.doi.org/10.1523/jneurosci.4921-05.2006