| Literature DB >> 26189680 |
Oren Parnas1, Marko Jovanovic1, Thomas M Eisenhaure2, Rebecca H Herbst3, Atray Dixit4, Chun Jimmie Ye5, Dariusz Przybylski1, Randall J Platt6, Itay Tirosh1, Neville E Sanjana7, Ophir Shalem8, Rahul Satija9, Raktima Raychowdhury1, Philipp Mertins1, Steven A Carr1, Feng Zhang10, Nir Hacohen11, Aviv Regev12.
Abstract
Finding the components of cellular circuits and determining their functions systematically remains a major challenge in mammalian cells. Here, we introduced genome-wide pooled CRISPR-Cas9 libraries into dendritic cells (DCs) to identify genes that control the induction of tumor necrosis factor (Tnf) by bacterial lipopolysaccharide (LPS), a key process in the host response to pathogens, mediated by the Tlr4 pathway. We found many of the known regulators of Tlr4 signaling, as well as dozens of previously unknown candidates that we validated. By measuring protein markers and mRNA profiles in DCs that are deficient in known or candidate genes, we classified the genes into three functional modules with distinct effects on the canonical responses to LPS and highlighted functions for the PAF complex and oligosaccharyltransferase (OST) complex. Our findings uncover new facets of innate immune circuits in primary cells and provide a genetic approach for dissection of mammalian cell circuits.Entities:
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Year: 2015 PMID: 26189680 PMCID: PMC4522370 DOI: 10.1016/j.cell.2015.06.059
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582