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Nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in Neb

Nemaline myopathy (NM) caused by mutations in the gene encoding nebulin (NEB) accounts for at least 50% of all NM cases worldwide, representing a significant disease burden. Most NEB-NM patients have autosomal recessive disease due to a compound heterozygous genotype. Of the few murine models develo...

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Autores principales: Laitila, Jenni M., McNamara, Elyshia L., Wingate, Catherine D., Goullee, Hayley, Ross, Jacob A., Taylor, Rhonda L., van der Pijl, Robbert, Griffiths, Lisa M., Harries, Rachel, Ravenscroft, Gianina, Clayton, Joshua S., Sewry, Caroline, Lawlor, Michael W., Ottenheijm, Coen A. C., Bakker, Anthony J., Ochala, Julien, Laing, Nigel G., Wallgren-Pettersson, Carina, Pelin, Katarina, Nowak, Kristen J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7027239/
https://www.ncbi.nlm.nih.gov/pubmed/32066503
http://dx.doi.org/10.1186/s40478-020-0893-1
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author Laitila, Jenni M.
McNamara, Elyshia L.
Wingate, Catherine D.
Goullee, Hayley
Ross, Jacob A.
Taylor, Rhonda L.
van der Pijl, Robbert
Griffiths, Lisa M.
Harries, Rachel
Ravenscroft, Gianina
Clayton, Joshua S.
Sewry, Caroline
Lawlor, Michael W.
Ottenheijm, Coen A. C.
Bakker, Anthony J.
Ochala, Julien
Laing, Nigel G.
Wallgren-Pettersson, Carina
Pelin, Katarina
Nowak, Kristen J.
author_facet Laitila, Jenni M.
McNamara, Elyshia L.
Wingate, Catherine D.
Goullee, Hayley
Ross, Jacob A.
Taylor, Rhonda L.
van der Pijl, Robbert
Griffiths, Lisa M.
Harries, Rachel
Ravenscroft, Gianina
Clayton, Joshua S.
Sewry, Caroline
Lawlor, Michael W.
Ottenheijm, Coen A. C.
Bakker, Anthony J.
Ochala, Julien
Laing, Nigel G.
Wallgren-Pettersson, Carina
Pelin, Katarina
Nowak, Kristen J.
author_sort Laitila, Jenni M.
collection PubMed
description Nemaline myopathy (NM) caused by mutations in the gene encoding nebulin (NEB) accounts for at least 50% of all NM cases worldwide, representing a significant disease burden. Most NEB-NM patients have autosomal recessive disease due to a compound heterozygous genotype. Of the few murine models developed for NEB-NM, most are Neb knockout models rather than harbouring Neb mutations. Additionally, some models have a very severe phenotype that limits their application for evaluating disease progression and potential therapies. No existing murine models possess compound heterozygous Neb mutations that reflect the genotype and resulting phenotype present in most patients. We aimed to develop a murine model that more closely matched the underlying genetics of NEB-NM, which could assist elucidation of the pathogenetic mechanisms underlying the disease. Here, we have characterised a mouse strain with compound heterozygous Neb mutations; one missense (p.Tyr2303His), affecting a conserved actin-binding site and one nonsense mutation (p.Tyr935*), introducing a premature stop codon early in the protein. Our studies reveal that this compound heterozygous model, Neb(Y2303H, Y935X), has striking skeletal muscle pathology including nemaline bodies. In vitro whole muscle and single myofibre physiology studies also demonstrate functional perturbations. However, no reduction in lifespan was noted. Therefore, Neb(Y2303H,Y935X) mice recapitulate human NEB-NM and are a much needed addition to the NEB-NM mouse model collection. The moderate phenotype also makes this an appropriate model for studying NEB-NM pathogenesis, and could potentially be suitable for testing therapeutic applications.
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spelling pubmed-70272392020-02-24 Nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in Neb Laitila, Jenni M. McNamara, Elyshia L. Wingate, Catherine D. Goullee, Hayley Ross, Jacob A. Taylor, Rhonda L. van der Pijl, Robbert Griffiths, Lisa M. Harries, Rachel Ravenscroft, Gianina Clayton, Joshua S. Sewry, Caroline Lawlor, Michael W. Ottenheijm, Coen A. C. Bakker, Anthony J. Ochala, Julien Laing, Nigel G. Wallgren-Pettersson, Carina Pelin, Katarina Nowak, Kristen J. Acta Neuropathol Commun Research Nemaline myopathy (NM) caused by mutations in the gene encoding nebulin (NEB) accounts for at least 50% of all NM cases worldwide, representing a significant disease burden. Most NEB-NM patients have autosomal recessive disease due to a compound heterozygous genotype. Of the few murine models developed for NEB-NM, most are Neb knockout models rather than harbouring Neb mutations. Additionally, some models have a very severe phenotype that limits their application for evaluating disease progression and potential therapies. No existing murine models possess compound heterozygous Neb mutations that reflect the genotype and resulting phenotype present in most patients. We aimed to develop a murine model that more closely matched the underlying genetics of NEB-NM, which could assist elucidation of the pathogenetic mechanisms underlying the disease. Here, we have characterised a mouse strain with compound heterozygous Neb mutations; one missense (p.Tyr2303His), affecting a conserved actin-binding site and one nonsense mutation (p.Tyr935*), introducing a premature stop codon early in the protein. Our studies reveal that this compound heterozygous model, Neb(Y2303H, Y935X), has striking skeletal muscle pathology including nemaline bodies. In vitro whole muscle and single myofibre physiology studies also demonstrate functional perturbations. However, no reduction in lifespan was noted. Therefore, Neb(Y2303H,Y935X) mice recapitulate human NEB-NM and are a much needed addition to the NEB-NM mouse model collection. The moderate phenotype also makes this an appropriate model for studying NEB-NM pathogenesis, and could potentially be suitable for testing therapeutic applications. BioMed Central 2020-02-17 /pmc/articles/PMC7027239/ /pubmed/32066503 http://dx.doi.org/10.1186/s40478-020-0893-1 Text en © The Author(s). 2020 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Laitila, Jenni M.
McNamara, Elyshia L.
Wingate, Catherine D.
Goullee, Hayley
Ross, Jacob A.
Taylor, Rhonda L.
van der Pijl, Robbert
Griffiths, Lisa M.
Harries, Rachel
Ravenscroft, Gianina
Clayton, Joshua S.
Sewry, Caroline
Lawlor, Michael W.
Ottenheijm, Coen A. C.
Bakker, Anthony J.
Ochala, Julien
Laing, Nigel G.
Wallgren-Pettersson, Carina
Pelin, Katarina
Nowak, Kristen J.
Nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in Neb
title Nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in Neb
title_full Nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in Neb
title_fullStr Nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in Neb
title_full_unstemmed Nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in Neb
title_short Nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in Neb
title_sort nebulin nemaline myopathy recapitulated in a compound heterozygous mouse model with both a missense and a nonsense mutation in neb
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7027239/
https://www.ncbi.nlm.nih.gov/pubmed/32066503
http://dx.doi.org/10.1186/s40478-020-0893-1
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