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CRISPR/Cas9-Induced (CTG⋅CAG)(n) Repeat Instability in the Myotonic Dystrophy Type 1 Locus: Implications for Therapeutic Genome Editing

Myotonic dystrophy type 1 (DM1) is caused by (CTG⋅CAG)(n)-repeat expansion within the DMPK gene and thought to be mediated by a toxic RNA gain of function. Current attempts to develop therapy for this disease mainly aim at destroying or blocking abnormal properties of mutant DMPK (CUG)n RNA. Here, w...

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Autores principales: van Agtmaal, Ellen L., André, Laurène M., Willemse, Marieke, Cumming, Sarah A., van Kessel, Ingeborg D.G., van den Broek, Walther J.A.A., Gourdon, Geneviève, Furling, Denis, Mouly, Vincent, Monckton, Darren G., Wansink, Derick G., Wieringa, Bé
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5363205/
https://www.ncbi.nlm.nih.gov/pubmed/28129118
http://dx.doi.org/10.1016/j.ymthe.2016.10.014
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author van Agtmaal, Ellen L.
André, Laurène M.
Willemse, Marieke
Cumming, Sarah A.
van Kessel, Ingeborg D.G.
van den Broek, Walther J.A.A.
Gourdon, Geneviève
Furling, Denis
Mouly, Vincent
Monckton, Darren G.
Wansink, Derick G.
Wieringa, Bé
author_facet van Agtmaal, Ellen L.
André, Laurène M.
Willemse, Marieke
Cumming, Sarah A.
van Kessel, Ingeborg D.G.
van den Broek, Walther J.A.A.
Gourdon, Geneviève
Furling, Denis
Mouly, Vincent
Monckton, Darren G.
Wansink, Derick G.
Wieringa, Bé
author_sort van Agtmaal, Ellen L.
collection PubMed
description Myotonic dystrophy type 1 (DM1) is caused by (CTG⋅CAG)(n)-repeat expansion within the DMPK gene and thought to be mediated by a toxic RNA gain of function. Current attempts to develop therapy for this disease mainly aim at destroying or blocking abnormal properties of mutant DMPK (CUG)n RNA. Here, we explored a DNA-directed strategy and demonstrate that single clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9-cleavage in either its 5′ or 3′ unique flank promotes uncontrollable deletion of large segments from the expanded trinucleotide repeat, rather than formation of short indels usually seen after double-strand break repair. Complete and precise excision of the repeat tract from normal and large expanded DMPK alleles in myoblasts from unaffected individuals, DM1 patients, and a DM1 mouse model could be achieved at high frequency by dual CRISPR/Cas9-cleavage at either side of the (CTG⋅CAG)n sequence. Importantly, removal of the repeat appeared to have no detrimental effects on the expression of genes in the DM1 locus. Moreover, myogenic capacity, nucleocytoplasmic distribution, and abnormal RNP-binding behavior of transcripts from the edited DMPK gene were normalized. Dual sgRNA-guided excision of the (CTG⋅CAG)n tract by CRISPR/Cas9 technology is applicable for developing isogenic cell lines for research and may provide new therapeutic opportunities for patients with DM1.
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spelling pubmed-53632052018-01-04 CRISPR/Cas9-Induced (CTG⋅CAG)(n) Repeat Instability in the Myotonic Dystrophy Type 1 Locus: Implications for Therapeutic Genome Editing van Agtmaal, Ellen L. André, Laurène M. Willemse, Marieke Cumming, Sarah A. van Kessel, Ingeborg D.G. van den Broek, Walther J.A.A. Gourdon, Geneviève Furling, Denis Mouly, Vincent Monckton, Darren G. Wansink, Derick G. Wieringa, Bé Mol Ther Original Article Myotonic dystrophy type 1 (DM1) is caused by (CTG⋅CAG)(n)-repeat expansion within the DMPK gene and thought to be mediated by a toxic RNA gain of function. Current attempts to develop therapy for this disease mainly aim at destroying or blocking abnormal properties of mutant DMPK (CUG)n RNA. Here, we explored a DNA-directed strategy and demonstrate that single clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9-cleavage in either its 5′ or 3′ unique flank promotes uncontrollable deletion of large segments from the expanded trinucleotide repeat, rather than formation of short indels usually seen after double-strand break repair. Complete and precise excision of the repeat tract from normal and large expanded DMPK alleles in myoblasts from unaffected individuals, DM1 patients, and a DM1 mouse model could be achieved at high frequency by dual CRISPR/Cas9-cleavage at either side of the (CTG⋅CAG)n sequence. Importantly, removal of the repeat appeared to have no detrimental effects on the expression of genes in the DM1 locus. Moreover, myogenic capacity, nucleocytoplasmic distribution, and abnormal RNP-binding behavior of transcripts from the edited DMPK gene were normalized. Dual sgRNA-guided excision of the (CTG⋅CAG)n tract by CRISPR/Cas9 technology is applicable for developing isogenic cell lines for research and may provide new therapeutic opportunities for patients with DM1. American Society of Gene & Cell Therapy 2017-01-04 2017-01-04 /pmc/articles/PMC5363205/ /pubmed/28129118 http://dx.doi.org/10.1016/j.ymthe.2016.10.014 Text en © 2017 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
van Agtmaal, Ellen L.
André, Laurène M.
Willemse, Marieke
Cumming, Sarah A.
van Kessel, Ingeborg D.G.
van den Broek, Walther J.A.A.
Gourdon, Geneviève
Furling, Denis
Mouly, Vincent
Monckton, Darren G.
Wansink, Derick G.
Wieringa, Bé
CRISPR/Cas9-Induced (CTG⋅CAG)(n) Repeat Instability in the Myotonic Dystrophy Type 1 Locus: Implications for Therapeutic Genome Editing
title CRISPR/Cas9-Induced (CTG⋅CAG)(n) Repeat Instability in the Myotonic Dystrophy Type 1 Locus: Implications for Therapeutic Genome Editing
title_full CRISPR/Cas9-Induced (CTG⋅CAG)(n) Repeat Instability in the Myotonic Dystrophy Type 1 Locus: Implications for Therapeutic Genome Editing
title_fullStr CRISPR/Cas9-Induced (CTG⋅CAG)(n) Repeat Instability in the Myotonic Dystrophy Type 1 Locus: Implications for Therapeutic Genome Editing
title_full_unstemmed CRISPR/Cas9-Induced (CTG⋅CAG)(n) Repeat Instability in the Myotonic Dystrophy Type 1 Locus: Implications for Therapeutic Genome Editing
title_short CRISPR/Cas9-Induced (CTG⋅CAG)(n) Repeat Instability in the Myotonic Dystrophy Type 1 Locus: Implications for Therapeutic Genome Editing
title_sort crispr/cas9-induced (ctg⋅cag)(n) repeat instability in the myotonic dystrophy type 1 locus: implications for therapeutic genome editing
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5363205/
https://www.ncbi.nlm.nih.gov/pubmed/28129118
http://dx.doi.org/10.1016/j.ymthe.2016.10.014
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