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A general approach to identify cell-permeable and synthetic anti-CRISPR small molecules.

Authors :
Lim D
Zhou Q
Cox KJ
Law BK
Lee M
Kokkonda P
Sreekanth V
Pergu R
Chaudhary SK
Gangopadhyay SA
Maji B
Lai S
Amako Y
Thompson DB
Subramanian HKK
Mesleh MF
Dančík V
Clemons PA
Wagner BK
Woo CM
Church GM
Choudhary A
Source :
Nature cell biology [Nat Cell Biol] 2022 Dec; Vol. 24 (12), pp. 1766-1775. Date of Electronic Publication: 2022 Nov 17.
Publication Year :
2022

Abstract

The need to control the activity and fidelity of CRISPR-associated nucleases has resulted in a demand for inhibitory anti-CRISPR molecules. The small-molecule inhibitor discovery platforms available at present are not generalizable to multiple nuclease classes, only target the initial step in the catalytic activity and require high concentrations of nuclease, resulting in inhibitors with suboptimal attributes, including poor potency. Here we report a high-throughput discovery pipeline consisting of a fluorescence resonance energy transfer-based assay that is generalizable to contemporary and emerging nucleases, operates at low nuclease concentrations and targets all catalytic steps. We applied this pipeline to identify BRD7586, a cell-permeable small-molecule inhibitor of SpCas9 that is twofold more potent than other inhibitors identified to date. Furthermore, unlike the reported inhibitors, BRD7586 enhanced SpCas9 specificity and its activity was independent of the genomic loci, DNA-repair pathway or mode of nuclease delivery. Overall, these studies describe a general pipeline to identify inhibitors of contemporary and emerging CRISPR-associated nucleases.<br /> (© 2022. The Author(s), under exclusive licence to Springer Nature Limited.)

Subjects

Subjects :
Genomics

Details

Language :
English
ISSN :
1476-4679
Volume :
24
Issue :
12
Database :
MEDLINE
Journal :
Nature cell biology
Publication Type :
Academic Journal
Accession number :
36396978
Full Text :
https://doi.org/10.1038/s41556-022-01005-8