CRISPR with Transcriptional Readout reveals influenza transcription is modulated by NELF and can precipitate an interferon response
Abstract
Transcription of interferons upon viral infection is critical for cell-intrinsic innate immunity. This process is influenced by many host and viral factors. To identify host factors that modulate interferon induction within cells infected by influenza A virus, we developed CRISPR with Transcriptional Readout using sequencing (CRITR-seq). CRITR-seq is a method linking CRISPR guide sequence to activity at a promoter of interest. Employing this method, we find that depletion of the Negative Elongation Factor (NELF) complex increases both flu transcription and interferon expression. We find that the process of flu transcription, both in the presence and absence of viral replication, is a key contributor to interferon induction. Taken together, our findings highlight innate immune ligand concentration as a limiting factor in triggering an interferon response, identify NELF as an important interface with the flu life cycle, and validate CRITR-seq as a tool for genome-wide screens for phenotypes of gene expression.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (8)
Alison C. Vicary
Department of Molecular Biology, School of Biological Sciences, University of California
Sydney N. Z. Jordan
Department of Molecular Biology, School of Biological Sciences, University of California
Marisa Mendes
Department of Molecular Biology, School of Biological Sciences, University of California
Sharmada Swaminath
Department of Molecular Biology, School of Biological Sciences, University of California
Lennice K. Castro
Department of Molecular Biology, School of Biological Sciences, University of California
Justin S. Porter
Department of Molecular Biology, School of Biological Sciences, University of California
Kevin D. Vo
Department of Molecular Biology, School of Biological Sciences, University of California
Alistair B. Russell
Department of Molecular Biology, School of Biological Sciences, University of California