AON-induced splice-switching and DMPK pre-mRNA degradation as potential therapeutic approaches for Myotonic Dystrophy type 1
Authors:
- Ewa Agnieszka Stępniak-Konieczna,
- Patryk Radosław Konieczny,
- Piotr Cywoniuk,
- Julia Dłużewska,
- Krzysztof Sobczak
Abstract
Expansion of an unstable CTG repeat in the 3′UTR of the DMPK gene causes Myotonic Dystrophy type 1 (DM1). CUG-expanded DMPK transcripts (CUGexp) sequester Muscleblind-like (MBNL) alternative splicing regulators in ribonuclear inclusions (foci), leading to abnormalities in RNA processing and splicing. To alleviate the burden of CUGexp, we tested therapeutic approach utilizing antisense oligonucleotides (AONs)-mediated DMPK splice-switching and degradation of mutated pre-mRNA. Experimental design involved: (i) skipping of selected constitutive exons to induce frameshifting and decay of toxic mRNAs by an RNA surveillance mechanism, and (ii) exclusion of the alternative exon 15 (e15) carrying CUGexp from DMPK mRNA. While first strategy failed to stimulate DMPK mRNA decay, exclusion of e15 enhanced DMPK nuclear export but triggered accumulation of potentially harmful spliced out pre-mRNA fragment containing CUGexp. Neutralization of this fragment with antisense gapmers complementary to intronic sequences preceding e15 failed to diminish DM1-specific spliceopathy due to AONs' chemistry-related toxicity. However, intronic gapmers alone reduced the level of DMPK mRNA and mitigated DM1-related cellular phenotypes including spliceopathy and nuclear foci. Thus, a combination of the correct chemistry and experimental approach should be carefully considered to design a safe AON-based therapeutic strategy for DM1. © 2020 The Author(s) 2020. Published by Oxford University Press on behalf of Nucleic Acids Research.
- Record ID
- UAMa73437e21ca544548b6f0bce06d29eb9
- Author
- Journal series
- Nucleic Acids Research, ISSN 0305-1048, e-ISSN 1362-4962
- Issue year
- 2020
- Vol
- 48
- No
- 5
- Pages
- 2531-2543
- Keywords in English
- antisense oligonucleotide; myotonic dystrophy protein kinase; antisense oligonucleotide; DMPK protein, human; messenger RNA; myotonic dystrophy protein kinase; RNA precursor, Article; bioaccumulation; cell culture; controlled study; DMPK gene; exon skipping; fibroblast; fluorescence in situ hybridization; gene expression; gene mutation; gene switching; genetic transfection; human; human cell; immunoblotting; luciferase assay; myotonic dystrophy; nuclear export; phenotype; priority journal; real time polymerase chain reaction; ribosomal frameshifting; RNA degradation; RNA sequencing; RNA splicing; RNA translation; alternative RNA splicing; cell nucleus; exon; genetics; metabolism; myotonic dystrophy; nucleocytoplasmic transport; RNA stability; trinucleotide repeat, Active Transport, Cell Nucleus; Alternative Splicing; Cell Nucleus; Exons; Humans; Myotonic Dystrophy; Myotonin-Protein Kinase; Oligonucleotides, Antisense; RNA Precursors; RNA Stability; RNA, Messenger; Trinucleotide Repeat Expansion
- ASJC Classification
- DOI
- DOI:10.1093/nar/gkaa007 Opening in a new tab
- URL
- https://www.scopus.com/inward/record.uri?eid=2-s2.0-85081069413&doi=10.1093%2fnar%2fgkaa007&partnerID=40&md5=0251eb8c570777add9651b047feade41 Opening in a new tab
- Language
- (en) English
- Score (nominal)
- 200
- Score source
- journalList
- Score
- = 200.0, 17-05-2022, ArticleFromJournal
- Publication indicators
- = 6; = 6; : 2016 = 2.657; : 2019 (2 years) = 11.501 - 2019 (5 years) =11.797
- Citation count
- 8
- Uniform Resource Identifier
- https://researchportal.amu.edu.pl/info/article/UAMa73437e21ca544548b6f0bce06d29eb9/
- URN
urn:amu-prod:UAMa73437e21ca544548b6f0bce06d29eb9
* presented citation count is obtained through Internet information analysis and it is close to the number calculated by the Publish or PerishOpening in a new tab system.