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Discovery and engineering of AiEvo2, a novel Cas12a nuclease for human gene editing applications
被引:0
|作者:
Sharrar, Allison
[1
]
de Tacca, Luisa Arake
[1
]
Meacham, Zuriah
[1
]
Staples-Ager, Johanna
[1
]
Collingwood, Trevor
[1
]
Rabuka, David
[1
]
Schelle, Michael
[1
]
机构:
[1] Acrigen Biosci Inc, Berkeley, CA 94710 USA
关键词:
CRISPR-CAS9;
NUCLEASES;
RNA;
CPF1;
SPECIFICITIES;
MECHANISMS;
DISEASE;
CAS9;
CAR;
D O I:
10.1016/j.jbc.2024.105685
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
The precision of gene editing technology is critical to creating safe and effective therapies for treating human disease. While the programmability of CRISPR-Cas systems has allowed for rapid innovation of new gene editing techniques, the off-target activity of these enzymes has hampered clinical development for novel therapeutics. Here, we report the identification and characterization of a novel CRISPR-Cas12a enzyme from Acinetobacter indicus (AiCas12a). We engineer the nuclease (termed AiEvo2) for increased specificity, protospacer adjacent motif recognition, and efficacy on a variety of human clinical targets. AiEvo2 is highly precise and able to efficiently discriminate between normal and disease-causing alleles in Huntington's patient-derived cells by taking advantage of a single nucleotide polymorphism on the disease- associated allele. AiEvo2 efficiently edits several liver- associated target genes including PCSK9 and TTR when delivered to primary hepatocytes as mRNA encapsulated in a lipid nanoparticle. The enzyme also engineers an effective CD19 chimeric antigen receptor-T-cell therapy from primary human T cells using multiplexed simultaneous editing and chimeric antigen receptor insertion. To further ensure precise editing, we engineered an anti-CRISPR protein to selectively inhibit off-target gene editing while retaining therapeutic on- target editing. The engineered AiEvo2 nuclease coupled with a novel engineered anti-CRISPR protein represents a new way to control the fi delity of editing and improve the safety and efficacy of gene editing therapies.
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