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Myospreader improves gene editing in skeletal muscle by myonuclear propagation.


ABSTRACT: Successful CRISPR/Cas9-based gene editing in skeletal muscle is dependent on efficient propagation of Cas9 to all myonuclei in the myofiber. However, nuclear-targeted gene therapy cargos are strongly restricted to their myonuclear domain of origin. By screening nuclear localization signals and nuclear export signals, we identify "Myospreader", a combination of short peptide sequences that promotes myonuclear propagation. Appending Myospreader to Cas9 enhances protein stability and myonuclear propagation in myoblasts and myofibers. AAV-delivered Myospreader dCas9 better inhibits transcription of toxic RNA in a myotonic dystrophy mouse model. Furthermore, Myospreader Cas9 achieves higher rates of gene editing in CRISPR reporter and Duchenne muscular dystrophy mouse models. Myospreader reveals design principles relevant to all nuclear-targeted gene therapies and highlights the importance of the spatial dimension in therapeutic development.

SUBMITTER: Poukalov KK 

PROVIDER: S-EPMC10659306 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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Myospreader improves gene editing in skeletal muscle by myonuclear propagation.

Poukalov Kiril K KK   Valero M Carmen MC   Muscato Derek R DR   Adams Leanne M LM   Chun Heejae H   Lee Young Il YI   Andrade Nadja S NS   Zeier Zane Z   Sweeney H Lee HL   Wang Eric T ET  

bioRxiv : the preprint server for biology 20231106


Successful CRISPR/Cas9-based gene editing in skeletal muscle is dependent on efficient propagation of Cas9 to all myonuclei in the myofiber. However, nuclear-targeted gene therapy cargos are strongly restricted to their myonuclear domain of origin. By screening nuclear localization signals and nuclear export signals, we identify "Myospreader", a combination of short peptide sequences that promotes myonuclear propagation. Appending Myospreader to Cas9 enhances protein stability and myonuclear pro  ...[more]

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