Sensitive and reliable evaluation of single-cut sgRNAs to restore dystrophin by a GFP-reporter assay.
Most Duchenne muscular dystrophy (DMD) cases are caused by deletions or duplications of one or more exons that disrupt the reading frame of DMD mRNA. Restoring the reading frame allows the production of partially functional dystrophin proteins, and result in less severe symptoms. Antisense oligonucl...
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doaj-cf35423d69684f1faff13463cecab7342021-03-03T22:07:17ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01159e023946810.1371/journal.pone.0239468Sensitive and reliable evaluation of single-cut sgRNAs to restore dystrophin by a GFP-reporter assay.Pin LyuKyung Whan YooManish Kumar YadavAnthony AtalaAnnemieke Aartsma-RusMaaike van PuttenDongsheng DuanBaisong LuBaisong LuMost Duchenne muscular dystrophy (DMD) cases are caused by deletions or duplications of one or more exons that disrupt the reading frame of DMD mRNA. Restoring the reading frame allows the production of partially functional dystrophin proteins, and result in less severe symptoms. Antisense oligonucleotide mediated exon skipping has been approved for DMD, but this strategy needs repeated treatment. CRISPR/Cas9 can also restore dystrophin reading frame. Although recent in vivo studies showed the efficacy of the single-cut reframing/exon skipping strategy, methods to find the most efficient single-cut sgRNAs for a specific mutation are lacking. Here we show that the insertion/deletion (INDEL) generating efficiency and the INDEL profiles both contribute to the reading frame restoring efficiency of a single-cut sgRNA, thus assays only examining INDEL frequency are not able to find the best sgRNAs. We therefore developed a GFP-reporter assay to evaluate single-cut reframing efficiency, reporting the combined effects of both aspects. We show that the GFP-reporter assay can reliably predict the performance of sgRNAs in myoblasts. This GFP-reporter assay makes it possible to efficiently and reliably find the most efficient single-cut sgRNA for restoring dystrophin expression.https://doi.org/10.1371/journal.pone.0239468 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pin Lyu Kyung Whan Yoo Manish Kumar Yadav Anthony Atala Annemieke Aartsma-Rus Maaike van Putten Dongsheng Duan Baisong Lu Baisong Lu |
spellingShingle |
Pin Lyu Kyung Whan Yoo Manish Kumar Yadav Anthony Atala Annemieke Aartsma-Rus Maaike van Putten Dongsheng Duan Baisong Lu Baisong Lu Sensitive and reliable evaluation of single-cut sgRNAs to restore dystrophin by a GFP-reporter assay. PLoS ONE |
author_facet |
Pin Lyu Kyung Whan Yoo Manish Kumar Yadav Anthony Atala Annemieke Aartsma-Rus Maaike van Putten Dongsheng Duan Baisong Lu Baisong Lu |
author_sort |
Pin Lyu |
title |
Sensitive and reliable evaluation of single-cut sgRNAs to restore dystrophin by a GFP-reporter assay. |
title_short |
Sensitive and reliable evaluation of single-cut sgRNAs to restore dystrophin by a GFP-reporter assay. |
title_full |
Sensitive and reliable evaluation of single-cut sgRNAs to restore dystrophin by a GFP-reporter assay. |
title_fullStr |
Sensitive and reliable evaluation of single-cut sgRNAs to restore dystrophin by a GFP-reporter assay. |
title_full_unstemmed |
Sensitive and reliable evaluation of single-cut sgRNAs to restore dystrophin by a GFP-reporter assay. |
title_sort |
sensitive and reliable evaluation of single-cut sgrnas to restore dystrophin by a gfp-reporter assay. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2020-01-01 |
description |
Most Duchenne muscular dystrophy (DMD) cases are caused by deletions or duplications of one or more exons that disrupt the reading frame of DMD mRNA. Restoring the reading frame allows the production of partially functional dystrophin proteins, and result in less severe symptoms. Antisense oligonucleotide mediated exon skipping has been approved for DMD, but this strategy needs repeated treatment. CRISPR/Cas9 can also restore dystrophin reading frame. Although recent in vivo studies showed the efficacy of the single-cut reframing/exon skipping strategy, methods to find the most efficient single-cut sgRNAs for a specific mutation are lacking. Here we show that the insertion/deletion (INDEL) generating efficiency and the INDEL profiles both contribute to the reading frame restoring efficiency of a single-cut sgRNA, thus assays only examining INDEL frequency are not able to find the best sgRNAs. We therefore developed a GFP-reporter assay to evaluate single-cut reframing efficiency, reporting the combined effects of both aspects. We show that the GFP-reporter assay can reliably predict the performance of sgRNAs in myoblasts. This GFP-reporter assay makes it possible to efficiently and reliably find the most efficient single-cut sgRNA for restoring dystrophin expression. |
url |
https://doi.org/10.1371/journal.pone.0239468 |
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