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A nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered P0 membrane targeting and gain of abnormal function

Protein zero (P0) is the major structural protein in peripheral myelin, and mutations in the Myelin Protein Zero (Mpz) gene produce wide-ranging hereditary neuropathy phenotypes. To gain insight in the mechanisms underlying a particularly severe form, congenital hypomyelination (CH), we targeted mou...

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Autores principales: Fratta, Pietro, Ornaghi, Francesca, Dati, Gabriele, Zambroni, Desirée, Saveri, Paola, Belin, Sophie, D’Adamo, Patrizia, Shy, Michael, Quattrini, Angelo, Laura Feltri, M, Wrabetz, Lawrence
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6298235/
https://www.ncbi.nlm.nih.gov/pubmed/30239779
http://dx.doi.org/10.1093/hmg/ddy336
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author Fratta, Pietro
Ornaghi, Francesca
Dati, Gabriele
Zambroni, Desirée
Saveri, Paola
Belin, Sophie
D’Adamo, Patrizia
Shy, Michael
Quattrini, Angelo
Laura Feltri, M
Wrabetz, Lawrence
author_facet Fratta, Pietro
Ornaghi, Francesca
Dati, Gabriele
Zambroni, Desirée
Saveri, Paola
Belin, Sophie
D’Adamo, Patrizia
Shy, Michael
Quattrini, Angelo
Laura Feltri, M
Wrabetz, Lawrence
author_sort Fratta, Pietro
collection PubMed
description Protein zero (P0) is the major structural protein in peripheral myelin, and mutations in the Myelin Protein Zero (Mpz) gene produce wide-ranging hereditary neuropathy phenotypes. To gain insight in the mechanisms underlying a particularly severe form, congenital hypomyelination (CH), we targeted mouse Mpz to encode P0Q215X, a nonsense mutation associated with the disease, that we show escapes nonsense mediated decay and is expressed in CH patient nerves. The knock-in mice express low levels of the resulting truncated protein, producing a milder phenotype when compared to patients, allowing to dissect the subtle pathogenic mechanisms occurring in otherwise very compromised peripheral myelin. We find that P0Q215X does not elicit an unfolded protein response, which is a key mechanism for other pathogenic MPZ mutations, but is instead in part aberrantly trafficked to non-myelin plasma membranes and induces defects in radial sorting of axons by Schwann cells. We show that the loss of the C-terminal Tyr-Ala-Met-Leu motif is responsible for P0 mislocalization, as its addition is able to restore correct P0Q215X trafficking in vitro. Lastly, we show that P0Q215X acts through dose-dependent gain of abnormal function, as wild-type P0 is unable to rescue the hypomyelination phenotype. Collectively, these data indicate that alterations at the premyelinating stage, linked to altered targeting of P0, may be responsible for CH, and that different types of gain of abnormal function produce the diverse neuropathy phenotypes associated with MPZ, supporting future allele-specific therapeutic silencing strategies.
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spelling pubmed-62982352018-12-21 A nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered P0 membrane targeting and gain of abnormal function Fratta, Pietro Ornaghi, Francesca Dati, Gabriele Zambroni, Desirée Saveri, Paola Belin, Sophie D’Adamo, Patrizia Shy, Michael Quattrini, Angelo Laura Feltri, M Wrabetz, Lawrence Hum Mol Genet General Article Protein zero (P0) is the major structural protein in peripheral myelin, and mutations in the Myelin Protein Zero (Mpz) gene produce wide-ranging hereditary neuropathy phenotypes. To gain insight in the mechanisms underlying a particularly severe form, congenital hypomyelination (CH), we targeted mouse Mpz to encode P0Q215X, a nonsense mutation associated with the disease, that we show escapes nonsense mediated decay and is expressed in CH patient nerves. The knock-in mice express low levels of the resulting truncated protein, producing a milder phenotype when compared to patients, allowing to dissect the subtle pathogenic mechanisms occurring in otherwise very compromised peripheral myelin. We find that P0Q215X does not elicit an unfolded protein response, which is a key mechanism for other pathogenic MPZ mutations, but is instead in part aberrantly trafficked to non-myelin plasma membranes and induces defects in radial sorting of axons by Schwann cells. We show that the loss of the C-terminal Tyr-Ala-Met-Leu motif is responsible for P0 mislocalization, as its addition is able to restore correct P0Q215X trafficking in vitro. Lastly, we show that P0Q215X acts through dose-dependent gain of abnormal function, as wild-type P0 is unable to rescue the hypomyelination phenotype. Collectively, these data indicate that alterations at the premyelinating stage, linked to altered targeting of P0, may be responsible for CH, and that different types of gain of abnormal function produce the diverse neuropathy phenotypes associated with MPZ, supporting future allele-specific therapeutic silencing strategies. Oxford University Press 2019-01-01 2018-09-19 /pmc/articles/PMC6298235/ /pubmed/30239779 http://dx.doi.org/10.1093/hmg/ddy336 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
Fratta, Pietro
Ornaghi, Francesca
Dati, Gabriele
Zambroni, Desirée
Saveri, Paola
Belin, Sophie
D’Adamo, Patrizia
Shy, Michael
Quattrini, Angelo
Laura Feltri, M
Wrabetz, Lawrence
A nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered P0 membrane targeting and gain of abnormal function
title A nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered P0 membrane targeting and gain of abnormal function
title_full A nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered P0 membrane targeting and gain of abnormal function
title_fullStr A nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered P0 membrane targeting and gain of abnormal function
title_full_unstemmed A nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered P0 membrane targeting and gain of abnormal function
title_short A nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered P0 membrane targeting and gain of abnormal function
title_sort nonsense mutation in myelin protein zero causes congenital hypomyelination neuropathy through altered p0 membrane targeting and gain of abnormal function
topic General Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6298235/
https://www.ncbi.nlm.nih.gov/pubmed/30239779
http://dx.doi.org/10.1093/hmg/ddy336
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