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Updated: Feb 5, 2026

Pooled CRISPR-Based Genetic Screens in Mammalian Cells
Published on: September 4, 2019
A CRISPR screen identifies IFI6 as an ER-resident interferon effector that blocks flavivirus replication
R Blake Richardson1, Maikke B Ohlson1, Jennifer L Eitson1
1Department of Microbiology, University of Texas Southwestern Medical Center, Dallas, TX, USA.
Abstract:
The endoplasmic reticulum (ER) is an architecturally diverse organelle that serves as a membrane source for the replication of multiple viruses. Flaviviruses, including yellow fever virus, West Nile virus, dengue virus and Zika virus, induce unique single-membrane ER invaginations that house the viral replication machinery1. Whether this virus-induced ER remodelling is vulnerable to antiviral pathways is unknown. Here, we show that flavivirus replication at the ER is targeted by the interferon (IFN) response. Through genome-scale CRISPR screening, we uncovered an antiviral mechanism mediated by a functional gene pairing between IFI6 (encoding IFN-α-inducible protein 6), an IFN-stimulated gene cloned over 30 years ago2, and HSPA5, which encodes the ER-resident heat shock protein 70 chaperone BiP. We reveal that IFI6 is an ER-localized integral membrane effector that is stabilized through interactions with BiP. Mechanistically, IFI6 prophylactically protects uninfected cells by preventing the formation of virus-induced ER membrane invaginations. Notably, IFI6 has little effect on other mammalian RNA viruses, including the related Flaviviridae family member hepatitis C virus, which replicates in double-membrane vesicles that protrude outwards from the ER. These findings support a model in which the IFN response is armed with a membrane-targeted effector that discriminately blocks the establishment of virus-specific ER microenvironments that are required for replication.
Insights
The interferon (IFN) response targets flavivirus replication within the endoplasmic reticulum (ER). A novel mechanism involves IFN-α-inducible protein 6 (IFI6) and BiP, preventing virus-induced ER membrane remodeling essential for viral propagation.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- The endoplasmic reticulum (ER) is a critical organelle for viral replication, providing membranes for viruses like flaviviruses.
- Flaviviruses induce unique single-membrane invaginations within the ER to house their replication machinery.
- The vulnerability of virus-induced ER remodeling to antiviral pathways remains largely unexplored.
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