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Precision Cas9 Genome Editing in vivo with All-in-one, Self-targeting AAV Vectors

Authors :
Raed Ibraheim
Phillip W. L. Tai
Aamir Mir
Nida Javeed
Jiaming Wang
Tomás Rodríguez
Samantha Nelson
Eraj Khokhar
Esther Mintzer
Stacy Maitland
Yueying Cao
Emmanouela Tsagkaraki
Scot A. Wolfe
Dan Wang
Athma A. Pai
Wen Xue
Guangping Gao
Erik J. Sontheimer
Publication Year :
2020
Publisher :
Cold Spring Harbor Laboratory, 2020.

Abstract

Adeno-associated virus (AAV) vectors are important delivery platforms for therapeutic genome editing but are severely constrained by cargo limits, especially for large effectors like Cas9s. Simultaneous delivery of multiple vectors can limit dose and efficacy and increase safety risks. The use of compact effectors has enabled single-AAV delivery of Cas9s with 1-3 guides for edits that use end-joining repair pathways, but many precise edits that correct disease-causing mutations in vivo require homology-directed repair (HDR) templates. Here, we describe single-vector, ∼4.8-kb AAV platforms that express Nme2Cas9 and either two sgRNAs to produce segmental deletions, or a single sgRNA with an HDR template. We also examine the utility of Nme2Cas9 target sites in the vector for self-inactivation. We demonstrate that these platforms can effectively treat two disease models [type I hereditary tyrosinemia (HT-I) and mucopolysaccharidosis type I (MPS-I)] in mice. These results will enable single-vector AAVs to achieve diverse therapeutic genome editing outcomes.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........37c1e0e0785d4f2e0153f3b30949c6cc