Allosteric control of type I-A CRISPR-Cas3 complexes and establishment as effective nucleic acid detection and human genome editing tools.
Details
Serval ID
serval:BIB_BC6F62E8C518
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Allosteric control of type I-A CRISPR-Cas3 complexes and establishment as effective nucleic acid detection and human genome editing tools.
Journal
Molecular cell
ISSN
1097-4164 (Electronic)
ISSN-L
1097-2765
Publication state
Published
Issued date
04/08/2022
Peer-reviewed
Oui
Volume
82
Number
15
Pages
2754-2768.e5
Language
english
Notes
Publication types: Journal Article ; Research Support, N.I.H., Extramural ; Research Support, Non-U.S. Gov't ; Research Support, U.S. Gov't, Non-P.H.S.
Publication Status: ppublish
Publication Status: ppublish
Abstract
Type I CRISPR-Cas systems typically rely on a two-step process to degrade DNA. First, an RNA-guided complex named Cascade identifies the complementary DNA target. The helicase-nuclease fusion enzyme Cas3 is then recruited in trans for processive DNA degradation. Contrary to this model, here, we show that type I-A Cascade and Cas3 function as an integral effector complex. We provide four cryoelectron microscopy (cryo-EM) snapshots of the Pyrococcus furiosus (Pfu) type I-A effector complex in different stages of DNA recognition and degradation. The HD nuclease of Cas3 is autoinhibited inside the effector complex. It is only allosterically activated upon full R-loop formation, when the entire targeted region has been validated by the RNA guide. The mechanistic insights inspired us to convert Pfu Cascade-Cas3 into a high-sensitivity, low-background, and temperature-activated nucleic acid detection tool. Moreover, Pfu CRISPR-Cas3 shows robust bi-directional deletion-editing activity in human cells, which could find usage in allele-specific inactivation of disease-causing mutations.
Keywords
CRISPR-Associated Proteins/genetics, CRISPR-Associated Proteins/metabolism, CRISPR-Cas Systems, Cryoelectron Microscopy, DNA/genetics, DNA/metabolism, Endonucleases/genetics, Gene Editing, Humans, RNA, CRISPR, Cas3, deletion, genome editing, nucleic acid detection, type I CRISPR-Cas
Pubmed
Web of science
Create date
26/07/2022 12:54
Last modification date
08/07/2023 5:50