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Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia

Familial Dysautonomia (FD) is a neurodegenerative disease in which aberrant tissue-specific splicing of IKBKAP exon 20 leads to reduction of IKAP protein levels in neuronal tissues. Here we generated a conditional knockout (CKO) mouse in which exon 20 of IKBKAP is deleted in the nervous system. The...

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Autores principales: Naftelberg, Shiran, Abramovitch, Ziv, Gluska, Shani, Yannai, Sivan, Joshi, Yuvraj, Donyo, Maya, Ben-Yaakov, Keren, Gradus, Tal, Zonszain, Jonathan, Farhy, Chen, Ashery-Padan, Ruth, Perlson, Eran, Ast, Gil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5172536/
https://www.ncbi.nlm.nih.gov/pubmed/27997532
http://dx.doi.org/10.1371/journal.pgen.1006486
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author Naftelberg, Shiran
Abramovitch, Ziv
Gluska, Shani
Yannai, Sivan
Joshi, Yuvraj
Donyo, Maya
Ben-Yaakov, Keren
Gradus, Tal
Zonszain, Jonathan
Farhy, Chen
Ashery-Padan, Ruth
Perlson, Eran
Ast, Gil
author_facet Naftelberg, Shiran
Abramovitch, Ziv
Gluska, Shani
Yannai, Sivan
Joshi, Yuvraj
Donyo, Maya
Ben-Yaakov, Keren
Gradus, Tal
Zonszain, Jonathan
Farhy, Chen
Ashery-Padan, Ruth
Perlson, Eran
Ast, Gil
author_sort Naftelberg, Shiran
collection PubMed
description Familial Dysautonomia (FD) is a neurodegenerative disease in which aberrant tissue-specific splicing of IKBKAP exon 20 leads to reduction of IKAP protein levels in neuronal tissues. Here we generated a conditional knockout (CKO) mouse in which exon 20 of IKBKAP is deleted in the nervous system. The CKO FD mice exhibit developmental delays, sensory abnormalities, and less organized dorsal root ganglia (DRGs) with attenuated axons compared to wild-type mice. Furthermore, the CKO FD DRGs show elevated HDAC6 levels, reduced acetylated α-tubulin, unstable microtubules, and impairment of axonal retrograde transport of nerve growth factor (NGF). These abnormalities in DRG properties underlie neuronal degeneration and FD symptoms. Phosphatidylserine treatment decreased HDAC6 levels and thus increased acetylation of α-tubulin. Further PS treatment resulted in recovery of axonal outgrowth and enhanced retrograde axonal transport by decreasing histone deacetylase 6 (HDAC6) levels and thus increasing acetylation of α-tubulin levels. Thus, we have identified the molecular pathway that leads to neurodegeneration in FD and have demonstrated that phosphatidylserine treatment has the potential to slow progression of neurodegeneration.
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spelling pubmed-51725362017-01-04 Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia Naftelberg, Shiran Abramovitch, Ziv Gluska, Shani Yannai, Sivan Joshi, Yuvraj Donyo, Maya Ben-Yaakov, Keren Gradus, Tal Zonszain, Jonathan Farhy, Chen Ashery-Padan, Ruth Perlson, Eran Ast, Gil PLoS Genet Research Article Familial Dysautonomia (FD) is a neurodegenerative disease in which aberrant tissue-specific splicing of IKBKAP exon 20 leads to reduction of IKAP protein levels in neuronal tissues. Here we generated a conditional knockout (CKO) mouse in which exon 20 of IKBKAP is deleted in the nervous system. The CKO FD mice exhibit developmental delays, sensory abnormalities, and less organized dorsal root ganglia (DRGs) with attenuated axons compared to wild-type mice. Furthermore, the CKO FD DRGs show elevated HDAC6 levels, reduced acetylated α-tubulin, unstable microtubules, and impairment of axonal retrograde transport of nerve growth factor (NGF). These abnormalities in DRG properties underlie neuronal degeneration and FD symptoms. Phosphatidylserine treatment decreased HDAC6 levels and thus increased acetylation of α-tubulin. Further PS treatment resulted in recovery of axonal outgrowth and enhanced retrograde axonal transport by decreasing histone deacetylase 6 (HDAC6) levels and thus increasing acetylation of α-tubulin levels. Thus, we have identified the molecular pathway that leads to neurodegeneration in FD and have demonstrated that phosphatidylserine treatment has the potential to slow progression of neurodegeneration. Public Library of Science 2016-12-20 /pmc/articles/PMC5172536/ /pubmed/27997532 http://dx.doi.org/10.1371/journal.pgen.1006486 Text en © 2016 Naftelberg 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Naftelberg, Shiran
Abramovitch, Ziv
Gluska, Shani
Yannai, Sivan
Joshi, Yuvraj
Donyo, Maya
Ben-Yaakov, Keren
Gradus, Tal
Zonszain, Jonathan
Farhy, Chen
Ashery-Padan, Ruth
Perlson, Eran
Ast, Gil
Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia
title Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia
title_full Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia
title_fullStr Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia
title_full_unstemmed Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia
title_short Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia
title_sort phosphatidylserine ameliorates neurodegenerative symptoms and enhances axonal transport in a mouse model of familial dysautonomia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5172536/
https://www.ncbi.nlm.nih.gov/pubmed/27997532
http://dx.doi.org/10.1371/journal.pgen.1006486
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