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Elimination of Mutant mtDNA by an Optimized mpTALEN Restores Differentiation Capacities of Heteroplasmic MELAS-iPSCs
- Source :
- Molecular Therapy: Methods & Clinical Development, Vol 20, Iss, Pp 54-68 (2021), Molecular Therapy. Methods & Clinical Development
- Publication Year :
- 2021
- Publisher :
- Elsevier, 2021.
-
Abstract
- Various mitochondrial diseases, including mitochondrial encephalopathy, lactic acidosis, and stroke-like episodes (MELAS), are associated with heteroplasmic mutations in mitochondrial DNA (mtDNA). Herein, we refined a previously generated G13513A mtDNA-targeted platinum transcription activator-like effector nuclease (G13513A-mpTALEN) to more efficiently manipulate mtDNA heteroplasmy in MELAS-induced pluripotent stem cells (iPSCs). Introduction of a nonconventional TALE array at position 6 in the mpTALEN monomer, which recognizes the sequence around the m.13513G>A position, improved the mpTALEN effect on the heteroplasmic shift. Furthermore, the reduced expression of the new Lv-mpTALEN(PKLB)/R-mpTALEN(PKR6C) pair by modifying codons in their expression vectors could suppress the reduction in the mtDNA copy number, which contributed to the rapid recovery of mtDNA in mpTALEN-applied iPSCs during subsequent culturing. Moreover, MELAS-iPSCs with a high proportion of G13513A mutant mtDNA showed unusual properties of spontaneous, embryoid body-mediated differentiation in vitro, which was relieved by decreasing the heteroplasmy level with G13513A-mpTALEN. Additionally, drug-inducible, myogenic differentiation 1 (MYOD)-transfected MELAS-iPSCs (MyoD-iPSCs) efficiently differentiated into myosin heavy chain-positive myocytes, with or without mutant mtDNA. Hence, heteroplasmic MyoD-iPSCs controlled by fine-tuned mpTALENs may contribute to a detailed analysis of the relationship between mutation load and cellular phenotypes in disease modeling.<br />Graphical Abstract<br />Yahata et al. refined a previous G13513A-mpTALEN to more efficiently manipulate mtDNA heteroplasmy in MELAS-iPSCs. Mutation-rich MELAS-iPSCs showed unusual differentiation properties, which were recovered by decreasing the heteroplasmy levels with new G13513A-mpTALEN. They further demonstrated that drug-inducible, MYOD-transfected MELAS-iPSCs could efficiently differentiate into MyHC-positive myocytes, with or without mutant mtDNA.
- Subjects :
- 0301 basic medicine
Mitochondrial DNA
induced pluripotent stem cell
lcsh:QH426-470
Mutant
mitochondrial DNA
Biology
MyoD
03 medical and health sciences
0302 clinical medicine
TALEN
Transcription (biology)
disease modeling
Genetics
lcsh:QH573-671
Induced pluripotent stem cell
Molecular Biology
myocyte
Transcription activator-like effector nuclease
lcsh:Cytology
Phenotype
Heteroplasmy
Cell biology
lcsh:Genetics
030104 developmental biology
030220 oncology & carcinogenesis
Molecular Medicine
Original Article
Subjects
Details
- Language :
- English
- ISSN :
- 23290501
- Volume :
- 20
- Database :
- OpenAIRE
- Journal :
- Molecular Therapy: Methods & Clinical Development
- Accession number :
- edsair.doi.dedup.....c01b6ee24313098fc704a91fca72d008