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Mutant HSPB8 causes motor neuron-specific neurite degeneration

Missense mutations (K141N and K141E) in the α-crystallin domain of the small heat shock protein HSPB8 (HSP22) cause distal hereditary motor neuropathy (distal HMN) or Charcot-Marie-Tooth neuropathy type 2L (CMT2L). The mechanism through which mutant HSPB8 leads to a specific motor neuron disease phe...

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Autores principales: Irobi, Joy, Almeida-Souza, Leonardo, Asselbergh, Bob, De Winter, Vicky, Goethals, Sofie, Dierick, Ines, Krishnan, Jyothsna, Timmermans, Jean-Pierre, Robberecht, Wim, De Jonghe, Peter, Van Den Bosch, Ludo, Janssens, Sophie, Timmerman, Vincent
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2908473/
https://www.ncbi.nlm.nih.gov/pubmed/20538880
http://dx.doi.org/10.1093/hmg/ddq234
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author Irobi, Joy
Almeida-Souza, Leonardo
Asselbergh, Bob
De Winter, Vicky
Goethals, Sofie
Dierick, Ines
Krishnan, Jyothsna
Timmermans, Jean-Pierre
Robberecht, Wim
De Jonghe, Peter
Van Den Bosch, Ludo
Janssens, Sophie
Timmerman, Vincent
author_facet Irobi, Joy
Almeida-Souza, Leonardo
Asselbergh, Bob
De Winter, Vicky
Goethals, Sofie
Dierick, Ines
Krishnan, Jyothsna
Timmermans, Jean-Pierre
Robberecht, Wim
De Jonghe, Peter
Van Den Bosch, Ludo
Janssens, Sophie
Timmerman, Vincent
author_sort Irobi, Joy
collection PubMed
description Missense mutations (K141N and K141E) in the α-crystallin domain of the small heat shock protein HSPB8 (HSP22) cause distal hereditary motor neuropathy (distal HMN) or Charcot-Marie-Tooth neuropathy type 2L (CMT2L). The mechanism through which mutant HSPB8 leads to a specific motor neuron disease phenotype is currently unknown. To address this question, we compared the effect of mutant HSPB8 in primary neuronal and glial cell cultures. In motor neurons, expression of both HSPB8 K141N and K141E mutations clearly resulted in neurite degeneration, as manifested by a reduction in number of neurites per cell, as well as in a reduction in average length of the neurites. Furthermore, expression of the K141E (and to a lesser extent, K141N) mutation also induced spheroids in the neurites. We did not detect any signs of apoptosis in motor neurons, showing that mutant HSPB8 resulted in neurite degeneration without inducing neuronal death. While overt in motor neurons, these phenotypes were only very mildly present in sensory neurons and completely absent in cortical neurons. Also glial cells did not show an altered phenotype upon expression of mutant HSPB8. These findings show that despite the ubiquitous presence of HSPB8, only motor neurons appear to be affected by the K141N and K141E mutations which explain the predominant motor neuron phenotype in distal HMN and CMT2L.
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spelling pubmed-29084732010-07-23 Mutant HSPB8 causes motor neuron-specific neurite degeneration Irobi, Joy Almeida-Souza, Leonardo Asselbergh, Bob De Winter, Vicky Goethals, Sofie Dierick, Ines Krishnan, Jyothsna Timmermans, Jean-Pierre Robberecht, Wim De Jonghe, Peter Van Den Bosch, Ludo Janssens, Sophie Timmerman, Vincent Hum Mol Genet Articles Missense mutations (K141N and K141E) in the α-crystallin domain of the small heat shock protein HSPB8 (HSP22) cause distal hereditary motor neuropathy (distal HMN) or Charcot-Marie-Tooth neuropathy type 2L (CMT2L). The mechanism through which mutant HSPB8 leads to a specific motor neuron disease phenotype is currently unknown. To address this question, we compared the effect of mutant HSPB8 in primary neuronal and glial cell cultures. In motor neurons, expression of both HSPB8 K141N and K141E mutations clearly resulted in neurite degeneration, as manifested by a reduction in number of neurites per cell, as well as in a reduction in average length of the neurites. Furthermore, expression of the K141E (and to a lesser extent, K141N) mutation also induced spheroids in the neurites. We did not detect any signs of apoptosis in motor neurons, showing that mutant HSPB8 resulted in neurite degeneration without inducing neuronal death. While overt in motor neurons, these phenotypes were only very mildly present in sensory neurons and completely absent in cortical neurons. Also glial cells did not show an altered phenotype upon expression of mutant HSPB8. These findings show that despite the ubiquitous presence of HSPB8, only motor neurons appear to be affected by the K141N and K141E mutations which explain the predominant motor neuron phenotype in distal HMN and CMT2L. Oxford University Press 2010-08-15 2010-06-10 /pmc/articles/PMC2908473/ /pubmed/20538880 http://dx.doi.org/10.1093/hmg/ddq234 Text en © The Author 2010. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Irobi, Joy
Almeida-Souza, Leonardo
Asselbergh, Bob
De Winter, Vicky
Goethals, Sofie
Dierick, Ines
Krishnan, Jyothsna
Timmermans, Jean-Pierre
Robberecht, Wim
De Jonghe, Peter
Van Den Bosch, Ludo
Janssens, Sophie
Timmerman, Vincent
Mutant HSPB8 causes motor neuron-specific neurite degeneration
title Mutant HSPB8 causes motor neuron-specific neurite degeneration
title_full Mutant HSPB8 causes motor neuron-specific neurite degeneration
title_fullStr Mutant HSPB8 causes motor neuron-specific neurite degeneration
title_full_unstemmed Mutant HSPB8 causes motor neuron-specific neurite degeneration
title_short Mutant HSPB8 causes motor neuron-specific neurite degeneration
title_sort mutant hspb8 causes motor neuron-specific neurite degeneration
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2908473/
https://www.ncbi.nlm.nih.gov/pubmed/20538880
http://dx.doi.org/10.1093/hmg/ddq234
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