| Literature DB >> 29320734 |
Mengyi Yang1, Sijia Peng1, Ruirui Sun1, Jingdi Lin1, Nan Wang1, Chunlai Chen2.
Abstract
Off-target binding and cleavage by Cas9 pose major challenges in its application. How the conformational dynamics of Cas9 govern its nuclease activity under on- and off-target conditions remains largely unknown. Here, using intra-molecular single-molecule fluorescence resonance energy transfer measurements, we revealed that Cas9 in apo, sgRNA-bound, and dsDNA/sgRNA-bound forms spontaneously transits among three major conformational states, mainly reflecting significant conformational mobility of the catalytic HNH domain. We also uncovered surprising long-range allosteric communication between the HNH domain and the RNA/DNA heteroduplex at the PAM-distal end to ensure correct positioning of the catalytic site, which demonstrated that a unique proofreading mechanism served as the last checkpoint before DNA cleavage. Several Cas9 residues were likely to mediate the allosteric communication and proofreading step. Modulating interactions between Cas9 and heteroduplex at the PAM-distal end by introducing mutations on these sites provides an alternative route to improve and optimize the CRISPR/Cas9 toolbox.Keywords: CRISPR; Cas9; FRET; allosteric communication; conformational dynamics; genome editing; off-target; proofreading; single-molecule
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Year: 2018 PMID: 29320734 DOI: 10.1016/j.celrep.2017.12.048
Source DB: PubMed Journal: Cell Rep Impact factor: 9.423