Cargando…

Pathologic and Phenotypic Alterations in a Mouse Expressing a Connexin47 Missense Mutation That Causes Pelizaeus-Merzbacher–Like Disease in Humans

Gap junction channels are intercellular conduits that allow diffusional exchange of ions, second messengers, and metabolites. Human oligodendrocytes express the gap junction protein connexin47 (Cx47), which is encoded by the GJC2 gene. The autosomal recessive mutation hCx47M283T causes Pelizaeus-Mer...

Descripción completa

Detalles Bibliográficos
Autores principales: Tress, Oliver, Maglione, Marta, Zlomuzica, Armin, May, Dennis, Dicke, Nikolai, Degen, Joachim, Dere, Ekrem, Kettenmann, Helmut, Hartmann, Dieter, Willecke, Klaus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3131295/
https://www.ncbi.nlm.nih.gov/pubmed/21750683
http://dx.doi.org/10.1371/journal.pgen.1002146
_version_ 1782207711793905664
author Tress, Oliver
Maglione, Marta
Zlomuzica, Armin
May, Dennis
Dicke, Nikolai
Degen, Joachim
Dere, Ekrem
Kettenmann, Helmut
Hartmann, Dieter
Willecke, Klaus
author_facet Tress, Oliver
Maglione, Marta
Zlomuzica, Armin
May, Dennis
Dicke, Nikolai
Degen, Joachim
Dere, Ekrem
Kettenmann, Helmut
Hartmann, Dieter
Willecke, Klaus
author_sort Tress, Oliver
collection PubMed
description Gap junction channels are intercellular conduits that allow diffusional exchange of ions, second messengers, and metabolites. Human oligodendrocytes express the gap junction protein connexin47 (Cx47), which is encoded by the GJC2 gene. The autosomal recessive mutation hCx47M283T causes Pelizaeus-Merzbacher–like disease 1 (PMLD1), a progressive leukodystrophy characterized by hypomyelination, retarded motor development, nystagmus, and spasticity. We introduced the human missense mutation into the orthologous position of the mouse Gjc2 gene and inserted the mCx47M282T coding sequence into the mouse genome via homologous recombination in embryonic stem cells. Three-week-old homozygous Cx47M282T mice displayed impaired rotarod performance but unchanged open-field behavior. 10-15-day-old homozygous Cx47M282T and Cx47 null mice revealed a more than 80% reduction in the number of cells participating in glial networks after biocytin injections into oligodendrocytes in sections of corpus callosum. Homozygous expression of mCx47M282T resulted in reduced MBP expression and astrogliosis in the cerebellum of ten-day-old mice which could also be detected in Cx47 null mice of the same age. Three-month-old homozygous Cx47M282T mice exhibited neither altered open-field behavior nor impaired rotarod performance anymore. Adult mCx47M282T expressing mice did not show substantial myelin alterations, but homozygous Cx47M282T mice, additionally deprived of connexin32, which is also expressed in oligodendrocytes, died within six weeks after birth and displayed severe myelin defects accompanied by astrogliosis and activated microglia. These results strongly suggest that PMLD1 is caused by the loss of Cx47 channel function that results in impaired panglial coupling in white matter tissue.
format Online
Article
Text
id pubmed-3131295
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31312952011-07-12 Pathologic and Phenotypic Alterations in a Mouse Expressing a Connexin47 Missense Mutation That Causes Pelizaeus-Merzbacher–Like Disease in Humans Tress, Oliver Maglione, Marta Zlomuzica, Armin May, Dennis Dicke, Nikolai Degen, Joachim Dere, Ekrem Kettenmann, Helmut Hartmann, Dieter Willecke, Klaus PLoS Genet Research Article Gap junction channels are intercellular conduits that allow diffusional exchange of ions, second messengers, and metabolites. Human oligodendrocytes express the gap junction protein connexin47 (Cx47), which is encoded by the GJC2 gene. The autosomal recessive mutation hCx47M283T causes Pelizaeus-Merzbacher–like disease 1 (PMLD1), a progressive leukodystrophy characterized by hypomyelination, retarded motor development, nystagmus, and spasticity. We introduced the human missense mutation into the orthologous position of the mouse Gjc2 gene and inserted the mCx47M282T coding sequence into the mouse genome via homologous recombination in embryonic stem cells. Three-week-old homozygous Cx47M282T mice displayed impaired rotarod performance but unchanged open-field behavior. 10-15-day-old homozygous Cx47M282T and Cx47 null mice revealed a more than 80% reduction in the number of cells participating in glial networks after biocytin injections into oligodendrocytes in sections of corpus callosum. Homozygous expression of mCx47M282T resulted in reduced MBP expression and astrogliosis in the cerebellum of ten-day-old mice which could also be detected in Cx47 null mice of the same age. Three-month-old homozygous Cx47M282T mice exhibited neither altered open-field behavior nor impaired rotarod performance anymore. Adult mCx47M282T expressing mice did not show substantial myelin alterations, but homozygous Cx47M282T mice, additionally deprived of connexin32, which is also expressed in oligodendrocytes, died within six weeks after birth and displayed severe myelin defects accompanied by astrogliosis and activated microglia. These results strongly suggest that PMLD1 is caused by the loss of Cx47 channel function that results in impaired panglial coupling in white matter tissue. Public Library of Science 2011-07-07 /pmc/articles/PMC3131295/ /pubmed/21750683 http://dx.doi.org/10.1371/journal.pgen.1002146 Text en Tress et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tress, Oliver
Maglione, Marta
Zlomuzica, Armin
May, Dennis
Dicke, Nikolai
Degen, Joachim
Dere, Ekrem
Kettenmann, Helmut
Hartmann, Dieter
Willecke, Klaus
Pathologic and Phenotypic Alterations in a Mouse Expressing a Connexin47 Missense Mutation That Causes Pelizaeus-Merzbacher–Like Disease in Humans
title Pathologic and Phenotypic Alterations in a Mouse Expressing a Connexin47 Missense Mutation That Causes Pelizaeus-Merzbacher–Like Disease in Humans
title_full Pathologic and Phenotypic Alterations in a Mouse Expressing a Connexin47 Missense Mutation That Causes Pelizaeus-Merzbacher–Like Disease in Humans
title_fullStr Pathologic and Phenotypic Alterations in a Mouse Expressing a Connexin47 Missense Mutation That Causes Pelizaeus-Merzbacher–Like Disease in Humans
title_full_unstemmed Pathologic and Phenotypic Alterations in a Mouse Expressing a Connexin47 Missense Mutation That Causes Pelizaeus-Merzbacher–Like Disease in Humans
title_short Pathologic and Phenotypic Alterations in a Mouse Expressing a Connexin47 Missense Mutation That Causes Pelizaeus-Merzbacher–Like Disease in Humans
title_sort pathologic and phenotypic alterations in a mouse expressing a connexin47 missense mutation that causes pelizaeus-merzbacher–like disease in humans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3131295/
https://www.ncbi.nlm.nih.gov/pubmed/21750683
http://dx.doi.org/10.1371/journal.pgen.1002146
work_keys_str_mv AT tressoliver pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT maglionemarta pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT zlomuzicaarmin pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT maydennis pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT dickenikolai pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT degenjoachim pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT dereekrem pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT kettenmannhelmut pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT hartmanndieter pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans
AT willeckeklaus pathologicandphenotypicalterationsinamouseexpressingaconnexin47missensemutationthatcausespelizaeusmerzbacherlikediseaseinhumans