Identification of AMOTL2 as an antiviral factor that enhances the human type I interferon response against Zika virus
Abstract
Zika virus (ZIKV) has caused multiple human outbreaks, with more recent epidemics associated with severe outcomes in infants. Today, ZIKV is endemic to many countries and presents a persistent threat for future epidemics. The host innate immune proteins that regulate ZIKV replication are incompletely defined. We developed a CRISPR knockout screen to identify host factors that impact ZIKV replication, resulting in the finding of angiomotin-like protein 2 (AMOTL2), a protein that inhibits ZIKV by regulating the host type I interferon (IFN) response. AMOTL2 affects IFN signaling by modulating STAT1 levels and activation in response to type I IFN. Thus, AMOTL2, which has largely been studied for its role in cancer, represents an antiviral protein that interacts with the IFN signaling pathway to promote downstream expression of IFN stimulated genes, resulting in restriction of ZIKV.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (11)
Alexandra C. Willcox
Human Biology Division, Fred Hutchinson Cancer Center
Theodore A. Gobillot
Human Biology Division, Fred Hutchinson Cancer Center
Caroline Kikawa
Human Biology Division, Fred Hutchinson Cancer Center
Nell E. Baumgarten
Human Biology Division, Fred Hutchinson Cancer Center
Caitlin I. Stoddard
Human Biology Division, Fred Hutchinson Cancer Center
Kevin Sung
Computational Biology Program, Public Health Sciences Division, Fred Hutchinson Cancer Center
Tamanash Bhattacharya
Basic Sciences Division, Fred Hutchinson Cancer Center
Tiia S. Freeman
Basic Sciences Division, Fred Hutchinson Cancer Center
Joshua Marceau
Human Biology Division, Fred Hutchinson Cancer Center
Daryl Humes
Human Biology Division, Fred Hutchinson Cancer Center
Julie Overbaugh
Human Biology Division, Fred Hutchinson Cancer Center