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A switchable Cas12a enabling CRISPR-based direct histone deacetylase activity detection

Biosens Bioelectron. 2022-10; 
Wenyuan Kang , Lin Liu , Peihang Yu , Tianyi Zhang , Chunyang Lei , Zhou Nie
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Abstract

The efficient and robust signal reporting ability of CRISPR-Cas system exhibits huge value in biosensing, but its applicability for non-nucleic acid analyte detection relies on the coupling of additional recognition modules. To address this limitation, we described a switchable Cas12a and exploited it for CRISPR-based direct analysis of histone deacetylase (HDAC) activity. Starting from the acetylation-mediated inactivation of Cas12a by anti-CRISPR protein AcrVA5, we demonstrated that the acetyl-inactivated Cas12a could be reversibly activated by HDAC-mediated deacetylation based on computational simulations (e.g., deep learning and protein-protein docking analysis) and experimental verifications. By leveraging... More

Keywords

Biosensing; CRISPR-Cas; Deep learning; Histone deacetylase; Signal amplification.