mitoTev‐TALE: a monomeric DNA editing enzyme to reduce mutant mitochondrial DNA levels

Abstract: Pathogenic mitochondrial DNA (mtDNA) mutations often co‐exist with wild‐type molecules (mtDNA heteroplasmy). Phenotypes manifest when the percentage of mutant mtDNA is high (70–90%). Previously, our laboratory showed that mitochondria‐targeted transcription activator‐like effector nucleases (mitoTALENs) can eliminate mutant mtDNA from heteroplasmic cells. However, mitoTALENs are dimeric and relatively large, making it difficult to package their coding genes into viral vectors, limiting their clinical application. The smaller monomeric GIY‐YIG homing nuclease from T4 phage (I‐TevI) provides a potential alternative. We tested whether molecular hybrids (mitoTev‐TALEs) could specifically bind and cleave mtDNA of patient‐derived cybrids harboring different levels of the m.8344A>G mtDNA point mutation, associated with myoclonic epilepsy with ragged‐red fibers (MERRF). We tested two mitoTev‐TALE designs, one of which robustly shifted the mtDNA ratio toward the wild type. When this mitoTev‐TALE was tested in a clone with high levels of the MERRF mutation (91% mutant), the shift in heteroplasmy resulted in an improvement of oxidative phosphorylation function. mitoTev‐TALE provides an effective architecture for mtDNA editing that could facilitate therapeutic delivery of mtDNA editing enzymes to affected tissues.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
mitoTev‐TALE: a monomeric DNA editing enzyme to reduce mutant mitochondrial DNA levels ; volume:10 ; number:9 ; year:2018 ; extent:11
EMBO molecular medicine / European Molecular Biology Organization ; 10, Heft 9 (2018) (gesamt 11)

Urheber
Pereira, Claudia V.
Bacman, Sandra R.
Arguello, Tania
Zekonyte, Ugne
Williams, Sion L.
Edgell, David R.
Moraes, Carlos T.

DOI
10.15252/emmm.201708084
URN
urn:nbn:de:101:1-2022090820525655694098
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
15.08.2025, 07:21 MESZ

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Beteiligte

  • Pereira, Claudia V.
  • Bacman, Sandra R.
  • Arguello, Tania
  • Zekonyte, Ugne
  • Williams, Sion L.
  • Edgell, David R.
  • Moraes, Carlos T.

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