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Homozygous mutation in the Neurofascin gene affecting the glial isoform of Neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia

The Neurofascins (NFASCs) are a family of proteins encoded by alternative transcripts of NFASC that cooperate in the assembly of the node of Ranvier in myelinated nerves. Differential expression of NFASC in neurons and glia presents a remarkable example of cell-type specific expression of protein is...

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Autores principales: Smigiel, Robert, Sherman, Diane L, Rydzanicz, Małgorzata, Walczak, Anna, Mikolajkow, Dorota, Krolak-Olejnik, Barbara, Kosińska, Joanna, Gasperowicz, Piotr, Biernacka, Anna, Stawinski, Piotr, Marciniak, Malgorzata, Andrzejewski, Witalij, Boczar, Maria, Krajewski, Paweł, Sasiadek, Maria M, Brophy, Peter J, Ploski, Rafal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6196652/
https://www.ncbi.nlm.nih.gov/pubmed/30124836
http://dx.doi.org/10.1093/hmg/ddy277
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author Smigiel, Robert
Sherman, Diane L
Rydzanicz, Małgorzata
Walczak, Anna
Mikolajkow, Dorota
Krolak-Olejnik, Barbara
Kosińska, Joanna
Gasperowicz, Piotr
Biernacka, Anna
Stawinski, Piotr
Marciniak, Malgorzata
Andrzejewski, Witalij
Boczar, Maria
Krajewski, Paweł
Sasiadek, Maria M
Brophy, Peter J
Ploski, Rafal
author_facet Smigiel, Robert
Sherman, Diane L
Rydzanicz, Małgorzata
Walczak, Anna
Mikolajkow, Dorota
Krolak-Olejnik, Barbara
Kosińska, Joanna
Gasperowicz, Piotr
Biernacka, Anna
Stawinski, Piotr
Marciniak, Malgorzata
Andrzejewski, Witalij
Boczar, Maria
Krajewski, Paweł
Sasiadek, Maria M
Brophy, Peter J
Ploski, Rafal
author_sort Smigiel, Robert
collection PubMed
description The Neurofascins (NFASCs) are a family of proteins encoded by alternative transcripts of NFASC that cooperate in the assembly of the node of Ranvier in myelinated nerves. Differential expression of NFASC in neurons and glia presents a remarkable example of cell-type specific expression of protein isoforms with a common overall function. In mice there are three NFASC isoforms: Nfasc186 and Nfasc140, located in the axonal membrane at the node of Ranvier, and Nfasc155, a glial component of the paranodal axoglial junction. Nfasc186 and Nfasc155 are the major isoforms at mature nodes and paranodes, respectively. Conditional deletion of the glial isoform Nfasc155 in mice causes severe motor coordination defects and death at 16–17 days after birth. We describe a proband with severe congenital hypotonia, contractures of fingers and toes, and no reaction to touch or pain. Whole exome sequencing revealed a homozygous NFASC variant chr1:204953187-C>T (rs755160624). The variant creates a premature stop codon in 3 out of four NFASC human transcripts and is predicted to specifically eliminate Nfasc155 leaving neuronal Neurofascin intact. The selective absence of Nfasc155 and disruption of the paranodal junction was confirmed by an immunofluorescent study of skin biopsies from the patient versus control. We propose that the disease in our proband is the first reported example of genetic deficiency of glial Neurofascin isoforms in humans and that the severity of the condition reflects the importance of the Nfasc155 in forming paranodal axoglial junctions and in determining the structure and function of the node of Ranvier.
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spelling pubmed-61966522018-10-25 Homozygous mutation in the Neurofascin gene affecting the glial isoform of Neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia Smigiel, Robert Sherman, Diane L Rydzanicz, Małgorzata Walczak, Anna Mikolajkow, Dorota Krolak-Olejnik, Barbara Kosińska, Joanna Gasperowicz, Piotr Biernacka, Anna Stawinski, Piotr Marciniak, Malgorzata Andrzejewski, Witalij Boczar, Maria Krajewski, Paweł Sasiadek, Maria M Brophy, Peter J Ploski, Rafal Hum Mol Genet General Article The Neurofascins (NFASCs) are a family of proteins encoded by alternative transcripts of NFASC that cooperate in the assembly of the node of Ranvier in myelinated nerves. Differential expression of NFASC in neurons and glia presents a remarkable example of cell-type specific expression of protein isoforms with a common overall function. In mice there are three NFASC isoforms: Nfasc186 and Nfasc140, located in the axonal membrane at the node of Ranvier, and Nfasc155, a glial component of the paranodal axoglial junction. Nfasc186 and Nfasc155 are the major isoforms at mature nodes and paranodes, respectively. Conditional deletion of the glial isoform Nfasc155 in mice causes severe motor coordination defects and death at 16–17 days after birth. We describe a proband with severe congenital hypotonia, contractures of fingers and toes, and no reaction to touch or pain. Whole exome sequencing revealed a homozygous NFASC variant chr1:204953187-C>T (rs755160624). The variant creates a premature stop codon in 3 out of four NFASC human transcripts and is predicted to specifically eliminate Nfasc155 leaving neuronal Neurofascin intact. The selective absence of Nfasc155 and disruption of the paranodal junction was confirmed by an immunofluorescent study of skin biopsies from the patient versus control. We propose that the disease in our proband is the first reported example of genetic deficiency of glial Neurofascin isoforms in humans and that the severity of the condition reflects the importance of the Nfasc155 in forming paranodal axoglial junctions and in determining the structure and function of the node of Ranvier. Oxford University Press 2018-11-01 2018-08-13 /pmc/articles/PMC6196652/ /pubmed/30124836 http://dx.doi.org/10.1093/hmg/ddy277 Text en © The Author(s) 2018. Published by Oxford University Press. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle General Article
Smigiel, Robert
Sherman, Diane L
Rydzanicz, Małgorzata
Walczak, Anna
Mikolajkow, Dorota
Krolak-Olejnik, Barbara
Kosińska, Joanna
Gasperowicz, Piotr
Biernacka, Anna
Stawinski, Piotr
Marciniak, Malgorzata
Andrzejewski, Witalij
Boczar, Maria
Krajewski, Paweł
Sasiadek, Maria M
Brophy, Peter J
Ploski, Rafal
Homozygous mutation in the Neurofascin gene affecting the glial isoform of Neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia
title Homozygous mutation in the Neurofascin gene affecting the glial isoform of Neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia
title_full Homozygous mutation in the Neurofascin gene affecting the glial isoform of Neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia
title_fullStr Homozygous mutation in the Neurofascin gene affecting the glial isoform of Neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia
title_full_unstemmed Homozygous mutation in the Neurofascin gene affecting the glial isoform of Neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia
title_short Homozygous mutation in the Neurofascin gene affecting the glial isoform of Neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia
title_sort homozygous mutation in the neurofascin gene affecting the glial isoform of neurofascin causes severe neurodevelopment disorder with hypotonia, amimia and areflexia
topic General Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6196652/
https://www.ncbi.nlm.nih.gov/pubmed/30124836
http://dx.doi.org/10.1093/hmg/ddy277
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