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Nature ; 613(7944): 582-587, 2023 01.
Article in English | MEDLINE | ID: mdl-36599980

ABSTRACT

Cas12a2 is a CRISPR-associated nuclease that performs RNA-guided, sequence-nonspecific degradation of single-stranded RNA, single-stranded DNA and double-stranded DNA following recognition of a complementary RNA target, culminating in abortive infection1. Here we report structures of Cas12a2 in binary, ternary and quaternary complexes to reveal a complete activation pathway. Our structures reveal that Cas12a2 is autoinhibited until binding a cognate RNA target, which exposes the RuvC active site within a large, positively charged cleft. Double-stranded DNA substrates are captured through duplex distortion and local melting, stabilized by pairs of 'aromatic clamp' residues that are crucial for double-stranded DNA degradation and in vivo immune system function. Our work provides a structural basis for this mechanism of abortive infection to achieve population-level immunity, which can be leveraged to create rational mutants that degrade a spectrum of collateral substrates.


Subject(s)
CRISPR-Associated Proteins , CRISPR-Cas Systems , RNA , CRISPR-Associated Proteins/antagonists & inhibitors , CRISPR-Associated Proteins/metabolism , DNA/chemistry , DNA/immunology , DNA/metabolism , RNA/chemistry , RNA/metabolism , Enzyme Activation , Catalytic Domain , Substrate Specificity
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