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Therapeutic Genome Editing for Myotonic Dystrophy Type 1 Using CRISPR/Cas9
- Source :
- Molecular Therapy
- Publication Year :
- 2018
- Publisher :
- Elsevier BV, 2018.
-
Abstract
- Myotonic dystrophy type 1 (DM1) is caused by a CTG nucleotide repeat expansion within the 3′ UTR of the Dystrophia Myotonica protein kinase gene. In this study, we explored therapeutic genome editing using CRISPR/Cas9 via targeted deletion of expanded CTG repeats and targeted insertion of polyadenylation signals in the 3′ UTR upstream of the CTG repeats to eliminate toxic RNA CUG repeats. We found paired SpCas9 or SaCas9 guide RNA induced deletion of expanded CTG repeats. However, this approach incurred frequent inversion in both the mutant and normal alleles. In contrast, the insertion of polyadenylation signals in the 3′ UTR upstream of the CTG repeats eliminated toxic RNA CUG repeats, which led to phenotype reversal in differentiated neural stem cells, forebrain neurons, cardiomyocytes, and skeletal muscle myofibers. We concluded that targeted insertion of polyadenylation signals in the 3′ UTR is a viable approach to develop therapeutic genome editing for DM1.<br />Myotonic dystrophy type 1 is caused by toxic RNAs with expanded CUG repeats in the 3′ UTR of the DMPK gene. Wang et al. developed a strategy to eliminate the toxic repeats by insertion of polyadenylation signals upstream of the expanded repeats for personalized cell-based therapy and in vivo therapeutic genome editing.
- Subjects :
- musculoskeletal diseases
0301 basic medicine
Untranslated region
induced pluripotent stem cell
congenital, hereditary, and neonatal diseases and abnormalities
nucleotide repeat expansion
Polyadenylation
Biology
Transfection
Myotonin-Protein Kinase
03 medical and health sciences
Neural Stem Cells
Genome editing
Drug Discovery
Genetics
genome editing
Humans
Myotonic Dystrophy
CRISPR
Myocytes, Cardiac
Guide RNA
polyadenylation
Muscle, Skeletal
CRISPR/Cas9
3' Untranslated Regions
Molecular Biology
Gene
Gene Editing
Neurons
Pharmacology
Cas9
SpCas9 nickase
Cell Differentiation
RNA 3' Polyadenylation Signals
Genetic Therapy
SaCas9
3. Good health
stem cell
HEK293 Cells
030104 developmental biology
Molecular Medicine
Original Article
CRISPR-Cas Systems
Trinucleotide Repeat Expansion
Trinucleotide repeat expansion
DMPK
RNA, Guide, Kinetoplastida
Subjects
Details
- ISSN :
- 15250016
- Volume :
- 26
- Database :
- OpenAIRE
- Journal :
- Molecular Therapy
- Accession number :
- edsair.doi.dedup.....36f9239753740956d1986a183743c317
- Full Text :
- https://doi.org/10.1016/j.ymthe.2018.09.003