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Transcriptome Engineering with RNA-Targeting Type VI-D CRISPR Effectors

Authors :
Peter Lotfy
Nicholas J. Brideau
Jennifer Oki
Patrick D. Hsu
Maxim N. Shokhirev
Silvana Konermann
Source :
Cell, vol 173, iss 3
Publication Year :
2018
Publisher :
eScholarship, University of California, 2018.

Abstract

Summary Class 2 CRISPR-Cas systems endow microbes with diverse mechanisms for adaptive immunity. Here, we analyzed prokaryotic genome and metagenome sequences to identify an uncharacterized family of RNA-guided, RNA-targeting CRISPR systems that we classify as type VI-D. Biochemical characterization and protein engineering of seven distinct orthologs generated a ribonuclease effector derived from Ruminococcus flavefaciens XPD3002 (CasRx) with robust activity in human cells. CasRx-mediated knockdown exhibits high efficiency and specificity relative to RNA interference across diverse endogenous transcripts. As one of the most compact single-effector Cas enzymes, CasRx can also be flexibly packaged into adeno-associated virus. We target virally encoded, catalytically inactive CasRx to cis elements of pre-mRNA to manipulate alternative splicing, alleviating dysregulated tau isoform ratios in a neuronal model of frontotemporal dementia. Our results present CasRx as a programmable RNA-binding module for efficient targeting of cellular RNA, enabling a general platform for transcriptome engineering and future therapeutic development.

Details

Database :
OpenAIRE
Journal :
Cell, vol 173, iss 3
Accession number :
edsair.doi.dedup.....d5ca7e6be2ac79241b13648bff0de07f