rAAV capsid mutants eliminate leaky expression from DNA donor template for homologous recombination

Author:

Ling Chen12ORCID,Yu Chenghui1,Wang Cong1,Yang Ming1,Yang Hengbin1,Yang Keying1,He Yun1,Shen Yajie3,Tang Shiyi2,Yu Xiaomin2,Zhou Zhengjun4,Zhou Shaolai4,Zhou Jian4,Zhu Liqing25,Li Jixi3ORCID

Affiliation:

1. State Key Laboratory of Genetic Engineering and Engineering Research Center of Gene Technology (Ministry of Education), School of Life Sciences, Zhongshan Hospital, Fudan University , Shanghai  200438 , China

2. Department of Clinical Laboratory, The First Affiliated Hospital of Wenzhou Medical University , Wenzhou , Zhejiang  325000 , China

3. State Key Laboratory of Genetic Engineering, School of Life Sciences and Huashan Hospital, Shanghai Engineering Research Center of Industrial Microorganisms, MOE Engineering Research Center of Gene Technology, Fudan University , Shanghai  200438 , China

4. Department of Liver Surgery and Transplantation, Liver Cancer Institute, Zhongshan Hospital, Fudan University , Shanghai  200032 , China

5. Department of Clinical Laboratory, Peking University Cancer Hospital and Institute , Beijing  100142 , China

Abstract

Abstract Precise genomic editing through the combination of CRISPR/Cas systems and recombinant adeno-associated virus (rAAV)-delivered homology directed repair (HDR) donor templates represents a powerful approach. However, the challenge of effectively suppressing leaky transcription from the rAAV vector, a phenomenon associated to cytotoxicity, persists. In this study, we demonstrated substantial promoter activities of various homology arms and inverted terminal repeats (ITR). To address this issue, we identified a novel rAAV variant, Y704T, which not only yields high-vector quantities but also effectively suppresses in cis mRNA transcription driven by a robust promoter. The Y704T variant maintains normal functionality in receptor interaction, intracellular trafficking, nuclear entry, uncoating, and second-strand synthesis, while specifically exhibiting defects in transcription. Importantly, this inhibitory effect is found to be independent of ITR, promoter types, and RNA polymerases. Mechanistic studies unveiled the involvement of Valosin Containing Protein (VCP/p97) in capsid-mediated transcription repression. Remarkably, the Y704T variant delivers HDR donor templates without compromising DNA replication ability and homologous recombination efficiency. In summary, our findings enhance the understanding of capsid-regulated transcription and introduce novel avenues for the application of the rAAV-CRISPR/Cas9 system in human gene therapy.

Funder

National Key Research and Development Program of China

Shanghai Key Program on Cell and Gene Therapy

State Key Laboratory of Genetic Engineering

Wenzhou Major Scientific and Technological Innovation Project

Oriental Scholars of Shanghai Universities

Publisher

Oxford University Press (OUP)

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