Engineered virus-like particles for transient delivery of prime editor ribonucleoprotein complexes in vivo
作者:Meirui An, Aditya Raguram, Samuel W. Du, Samagya Banskota, Jessie R. Davis, Gregory A. Newby, Paul Z. Chen, Krzysztof Palczewski, David R. Liu · 发表于:Nature Biotechnology · 年份:2024 · DOI:10.1038/s41587-023-02078-y · 被引用次数:228 · 研究领域:Medicine
Prime editing enables precise installation of genomic substitutions, insertions and deletions in living systems. Efficient in vitro and in vivo delivery of prime editing components, however, remains a challenge. Here we report prime editor engineered virus-like particles (PE-eVLPs) that deliver prime editor proteins, prime editing guide RNAs and nicking single guide RNAs as transient ribonucleoprotein complexes. We systematically engineered v3 and v3b PE-eVLPs with 65- to 170-fold higher editing efficiency in human cells compared to a PE-eVLP construct based on our previously reported base editor eVLP architecture. In two mouse models of genetic blindness, single injections of v3 PE-eVLPs resulted in therapeutically relevant levels of prime editing in the retina, protein expression restoration and partial visual function rescue. Optimized PE-eVLPs support transient in vivo delivery of prime editor ribonucleoproteins, enhancing the potential safety of prime editing by reducing off-target editing and obviating the possibility of oncogenic transgene integration. Delivery of prime editors in vivo is improved using virus-like particles.