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Crystal structure of the anti-CRISPR, AcrIIC4

Authors
Kim, G.E.Lee, S.Y.Park, H.H.
Issue Date
Dec-2021
Publisher
John Wiley and Sons Inc
Keywords
AcrIIC4; anti-CRISPR proteins; CRISPR-Cas system; crystal structure; gene editing
Citation
Protein Science, v.30, no.12, pp 2474 - 2481
Pages
8
Journal Title
Protein Science
Volume
30
Number
12
Start Page
2474
End Page
2481
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/51327
DOI
10.1002/pro.4214
ISSN
0961-8368
1469-896X
Abstract
Clustered regularly interspaced short palindromic repeats (CRISPRs)-CRISPR-associated protein systems are bacterial and archaeal defense mechanisms against invading elements such as phages and viruses. To overcome these defense systems, phages and viruses have developed inhibitors called anti-CRISPRs (Acrs) that are capable of inhibiting the host CRISPR-Cas system via different mechanisms. Although the inhibitory mechanisms of AcrIIC1, AcrIIC2, and AcrIIC3 have been revealed, the inhibitory mechanisms of AcrIIC4 and AcrIIC5 have not been fully understood and structural data are unavailable. In this study, we elucidated the crystal structure of Type IIC anti-CRISPR protein, AcrIIC4. Our structural analysis revealed that AcrIIC4 exhibited a helical bundle fold comprising four helixes. Further biochemical and biophysical analyses showed that AcrIIC4 formed a monomer in solution, and monomeric AcrIIC4 directly interacted with Cas9 and Cas9/sgRNA complex. Discovery of the structure of AcrIIC4 and their interaction mode on Cas9 will help us elucidate the diversity in the inhibitory mechanisms of the Acr protein family. © 2021 The Protein Society.
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