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Inhibition of Fast Axonal Transport by Pathogenic SOD1 Involves Activation of p38 MAP Kinase

Dying-back degeneration of motor neuron axons represents an established feature of familial amyotrophic lateral sclerosis (FALS) associated with superoxide dismutase 1 (SOD1) mutations, but axon-autonomous effects of pathogenic SOD1 remained undefined. Characteristics of motor neurons affected in FA...

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Autores principales: Morfini, Gerardo A., Bosco, Daryl A., Brown, Hannah, Gatto, Rodolfo, Kaminska, Agnieszka, Song, Yuyu, Molla, Linda, Baker, Lisa, Marangoni, M. Natalia, Berth, Sarah, Tavassoli, Ehsan, Bagnato, Carolina, Tiwari, Ashutosh, Hayward, Lawrence J., Pigino, Gustavo F., Watterson, D. Martin, Huang, Chun-Fang, Banker, Gary, Brown, Robert H., Brady, Scott T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3680447/
https://www.ncbi.nlm.nih.gov/pubmed/23776455
http://dx.doi.org/10.1371/journal.pone.0065235
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author Morfini, Gerardo A.
Bosco, Daryl A.
Brown, Hannah
Gatto, Rodolfo
Kaminska, Agnieszka
Song, Yuyu
Molla, Linda
Baker, Lisa
Marangoni, M. Natalia
Berth, Sarah
Tavassoli, Ehsan
Bagnato, Carolina
Tiwari, Ashutosh
Hayward, Lawrence J.
Pigino, Gustavo F.
Watterson, D. Martin
Huang, Chun-Fang
Banker, Gary
Brown, Robert H.
Brady, Scott T.
author_facet Morfini, Gerardo A.
Bosco, Daryl A.
Brown, Hannah
Gatto, Rodolfo
Kaminska, Agnieszka
Song, Yuyu
Molla, Linda
Baker, Lisa
Marangoni, M. Natalia
Berth, Sarah
Tavassoli, Ehsan
Bagnato, Carolina
Tiwari, Ashutosh
Hayward, Lawrence J.
Pigino, Gustavo F.
Watterson, D. Martin
Huang, Chun-Fang
Banker, Gary
Brown, Robert H.
Brady, Scott T.
author_sort Morfini, Gerardo A.
collection PubMed
description Dying-back degeneration of motor neuron axons represents an established feature of familial amyotrophic lateral sclerosis (FALS) associated with superoxide dismutase 1 (SOD1) mutations, but axon-autonomous effects of pathogenic SOD1 remained undefined. Characteristics of motor neurons affected in FALS include abnormal kinase activation, aberrant neurofilament phosphorylation, and fast axonal transport (FAT) deficits, but functional relationships among these pathogenic events were unclear. Experiments in isolated squid axoplasm reveal that FALS-related SOD1 mutant polypeptides inhibit FAT through a mechanism involving a p38 mitogen activated protein kinase pathway. Mutant SOD1 activated neuronal p38 in mouse spinal cord, neuroblastoma cells and squid axoplasm. Active p38 MAP kinase phosphorylated kinesin-1, and this phosphorylation event inhibited kinesin-1. Finally, vesicle motility assays revealed previously unrecognized, isoform-specific effects of p38 on FAT. Axon-autonomous activation of the p38 pathway represents a novel gain of toxic function for FALS-linked SOD1 proteins consistent with the dying-back pattern of neurodegeneration characteristic of ALS.
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spelling pubmed-36804472013-06-17 Inhibition of Fast Axonal Transport by Pathogenic SOD1 Involves Activation of p38 MAP Kinase Morfini, Gerardo A. Bosco, Daryl A. Brown, Hannah Gatto, Rodolfo Kaminska, Agnieszka Song, Yuyu Molla, Linda Baker, Lisa Marangoni, M. Natalia Berth, Sarah Tavassoli, Ehsan Bagnato, Carolina Tiwari, Ashutosh Hayward, Lawrence J. Pigino, Gustavo F. Watterson, D. Martin Huang, Chun-Fang Banker, Gary Brown, Robert H. Brady, Scott T. PLoS One Research Article Dying-back degeneration of motor neuron axons represents an established feature of familial amyotrophic lateral sclerosis (FALS) associated with superoxide dismutase 1 (SOD1) mutations, but axon-autonomous effects of pathogenic SOD1 remained undefined. Characteristics of motor neurons affected in FALS include abnormal kinase activation, aberrant neurofilament phosphorylation, and fast axonal transport (FAT) deficits, but functional relationships among these pathogenic events were unclear. Experiments in isolated squid axoplasm reveal that FALS-related SOD1 mutant polypeptides inhibit FAT through a mechanism involving a p38 mitogen activated protein kinase pathway. Mutant SOD1 activated neuronal p38 in mouse spinal cord, neuroblastoma cells and squid axoplasm. Active p38 MAP kinase phosphorylated kinesin-1, and this phosphorylation event inhibited kinesin-1. Finally, vesicle motility assays revealed previously unrecognized, isoform-specific effects of p38 on FAT. Axon-autonomous activation of the p38 pathway represents a novel gain of toxic function for FALS-linked SOD1 proteins consistent with the dying-back pattern of neurodegeneration characteristic of ALS. Public Library of Science 2013-06-12 /pmc/articles/PMC3680447/ /pubmed/23776455 http://dx.doi.org/10.1371/journal.pone.0065235 Text en © 2013 Morfini 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
Morfini, Gerardo A.
Bosco, Daryl A.
Brown, Hannah
Gatto, Rodolfo
Kaminska, Agnieszka
Song, Yuyu
Molla, Linda
Baker, Lisa
Marangoni, M. Natalia
Berth, Sarah
Tavassoli, Ehsan
Bagnato, Carolina
Tiwari, Ashutosh
Hayward, Lawrence J.
Pigino, Gustavo F.
Watterson, D. Martin
Huang, Chun-Fang
Banker, Gary
Brown, Robert H.
Brady, Scott T.
Inhibition of Fast Axonal Transport by Pathogenic SOD1 Involves Activation of p38 MAP Kinase
title Inhibition of Fast Axonal Transport by Pathogenic SOD1 Involves Activation of p38 MAP Kinase
title_full Inhibition of Fast Axonal Transport by Pathogenic SOD1 Involves Activation of p38 MAP Kinase
title_fullStr Inhibition of Fast Axonal Transport by Pathogenic SOD1 Involves Activation of p38 MAP Kinase
title_full_unstemmed Inhibition of Fast Axonal Transport by Pathogenic SOD1 Involves Activation of p38 MAP Kinase
title_short Inhibition of Fast Axonal Transport by Pathogenic SOD1 Involves Activation of p38 MAP Kinase
title_sort inhibition of fast axonal transport by pathogenic sod1 involves activation of p38 map kinase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3680447/
https://www.ncbi.nlm.nih.gov/pubmed/23776455
http://dx.doi.org/10.1371/journal.pone.0065235
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