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Novel Type V-A CRISPR Effectors Are Active Nucleases with Expanded Targeting Capabilities.


ABSTRACT: Cas12a enzymes are quickly being adopted for use in a variety of genome-editing applications. These programmable nucleases are part of adaptive microbial immune systems, the natural diversity of which has been largely unexplored. Here, we identified novel families of Type V-A CRISPR nucleases through a large-scale analysis of metagenomes collected from a variety of complex environments, and developed representatives of these systems into gene-editing platforms. The nucleases display extensive protein variation and can be programmed by a single-guide RNA with specific motifs. The majority of these enzymes are part of systems recovered from uncultivated organisms, some of which also encode a divergent Type V effector. Biochemical analysis uncovered unexpected protospacer adjacent motif diversity, indicating that these systems will facilitate a variety of genome-engineering applications. The simplicity of guide sequences and activity in human cell lines suggest utility in gene and cell therapies.

SUBMITTER: Aliaga Goltsman DS 

PROVIDER: S-EPMC7757703 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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Novel Type V-A CRISPR Effectors Are Active Nucleases with Expanded Targeting Capabilities.

Aliaga Goltsman Daniela S DS   Alexander Lisa M LM   Devoto Audra E AE   Albers Justine B JB   Liu Jason J   Butterfield Cristina N CN   Brown Christopher T CT   Thomas Brian C BC  

The CRISPR journal 20201103 6


Cas12a enzymes are quickly being adopted for use in a variety of genome-editing applications. These programmable nucleases are part of adaptive microbial immune systems, the natural diversity of which has been largely unexplored. Here, we identified novel families of Type V-A CRISPR nucleases through a large-scale analysis of metagenomes collected from a variety of complex environments, and developed representatives of these systems into gene-editing platforms. The nucleases display extensive pr  ...[more]

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