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CRISPR-Cas9 Ribonucleoprotein-Mediated Genomic Editing in Mature Primary Innate Immune Cells.

Citation
Riggan, L., et al. “Crispr-Cas9 Ribonucleoprotein-Mediated Genomic Editing In Mature Primary Innate Immune Cells.”. Cell Reports, p. 107651.
Center UCSD-UCLA
Author Luke Riggan, Andrew D Hildreth, Marion Rolot, Yung-Yu Wong, William Satyadi, Ryan Sun, Christopher Huerta, Timothy E O'Sullivan
Keywords CRISPR, Cas9, ILC, cRNP, dendritic cell, Innate immunity, Macrophage
Abstract

CRISPR genome engineering has become a powerful tool to functionally investigate the complex mechanisms of immune system regulation. While decades of work have aimed to genetically reprogram innate immunity, the utility of current approaches is restricted by poor knockout efficiencies or limited specificity for mature cell lineages in vivo. Here, we describe an optimized strategy for non-viral CRISPR-Cas9 ribonucleoprotein (cRNP) genomic editing of mature primary mouse innate lymphocyte cells (ILCs) and myeloid lineage cells that results in an almost complete loss of single or double target gene expression from a single electroporation. Furthermore, we describe in vivo adoptive transfer mouse models that can be utilized to screen for gene function during viral infection using cRNP-edited naive natural killer (NK) cells and bone-marrow-derived conventional dendritic cell precursors (cDCPs). This resource will enhance target gene discovery and offer a specific and simplified approach to gene editing in the mouse innate immune system.

Year of Publication
2020
Journal
Cell reports
Volume
31
Issue
7
Number of Pages
107651
Date Published
12/2020
ISSN Number
2211-1247
DOI
10.1016/j.celrep.2020.107651
Alternate Journal
Cell Rep
PMID
32433960
PMCID
PMC7294876
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