Summary information and primary citation
- PDB-id
-
8hnt;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- immune system
- Method
- X-ray (3.06 Å)
- Summary
- Crystal structure of anti-crispr protein acriic4 bound
to hpacas9-sgrna surveillance complex
- Reference
-
Sun W, Cheng Z, Wang J, Yang J, Li X, Wang J, Chen M,
Yang X, Sheng G, Lou J, Wang Y (2023): "AcrIIC4
inhibits type II-C Cas9 by preventing R-loop
formation." Proc.Natl.Acad.Sci.USA,
120, e2303675120. doi: 10.1073/pnas.2303675120.
- Abstract
- Anti-CRISPR (Acr) proteins are encoded by phages and
other mobile genetic elements and inhibit host CRISPR-Cas
immunity using versatile strategies. AcrIIC4 is a
broad-spectrum Acr that inhibits the type II-C CRISPR-Cas9
system in several species by an unknown mechanism. Here, we
determined a series of structures of <i>Haemophilus
parainfluenzae</i> Cas9 (HpaCas9)-sgRNA in complex
with AcrIIC4 and/or target DNA, as well as the crystal
structure of AcrIIC4 alone. We found that AcrIIC4 resides
in the crevice between the REC1 and REC2 domains of
HpaCas9, where its extensive interactions restrict the
mobility of the REC2 domain and prevent the unwinding of
target double-stranded (ds) DNA at the PAM-distal end.
Therefore, the full-length guide RNA:target DNA
heteroduplex fails to form in the presence of AcrIIC4,
preventing Cas9 nuclease activation. Altogether, our
structural and biochemical studies illuminate a unique Acr
mechanism that allows DNA binding to the Cas9 effector
complex but blocks its cleavage by preventing R-loop
formation, a key step supporting DNA cleavage by Cas9.