Back to Search Start Over

Maximizing CRISPRi efficacy and accessibility with dual- sgRNA libraries and optimal effectors.

Authors :
Replogle, Joseph M.
Bonnar, Jessica L.
Pogson, Angela N.
Liem, Christina R.
Maier, Nolan K.
Yufang Ding
Russell, Baylee J.
Xingren Wang
Kun Leng
Guna, Alina
Norman, Thomas M.
Pak, Ryan A.
Ramos, Daniel M.
Ward, Michael E.
Gilbert, Luke A.
Kampmann, Martin
Weissman, Jonathan S.
Jost, Marco
Source :
eLife. 1/9/2023, p1-32. 32p.
Publication Year :
2023

Abstract

CRISPR interference (CRISPRi) enables programmable, reversible, and titratable repression of gene expression (knockdown) in mammalian cells. Initial CRISPRi-mediated genetic screens have showcased the potential to address basic questions in cell biology, genetics, and biotechnology, but wider deployment of CRISPRi screening has been constrained by the large size of single guide RNA (sgRNA) libraries and challenges in generating cell models with consistent CRISPRi-mediated knockdown. Here, we present next-generation CRISPRi sgRNA libraries and effector expression constructs that enable strong and consistent knockdown across mammalian cell models. First, we combine empirical sgRNA selection with a dual-sgRNA library design to generate an ultracompact (1-3 elements per gene), highly active CRISPRi sgRNA library. Next, we compare CRISPRi effectors to show that the recently published Zim3-dCas9 provides an excellent balance between strong on-target knockdown and minimal non-specific effects on cell growth or the transcriptome. Finally, we engineer a suite of cell lines with stable expression of Zim3-dCas9 and robust on-target knockdown. Our results and publicly available reagents establish best practices for CRISPRi genetic screening. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
2050084X
Database :
Academic Search Index
Journal :
eLife
Publication Type :
Academic Journal
Accession number :
161253822
Full Text :
https://doi.org/10.7554/eLife.81856