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Evaluation of Zika Virus-specific T-cell Responses in Immunoprivileged Organs of Infected Ifnar1-/- Mice
Published on: October 17, 2018
Activation of IRE1 Endonuclease Activity Regulates Zika Virus Replication and Antiviral Response During Infection in
Tomás Hernández-Díaz1,2,3, Aarón Oyarzún-Arrau1,2, Aracelly Gaete-Argel1,2,3
1Laboratory of Molecular and Cellular Virology, Núcleo Interdisciplinario de Microbiología, Instituto de Ciencias Biomédicas (ICBM), Facultad de Medicina, Universidad de Chile, Independencia 1027, Santiago 8380453, Chile.
Abstract:
Zika virus (ZIKV) can infect and replicate in the endoplasmic reticulum (ER) of different human cell types, including neural progenitor cells, radial glial cells, astrocytes, and microglia in the brain. ZIKV infection of microglia is expected to trigger both ER stress and the induction of an antiviral response through production of type-I interferons and pro-inflammatory cytokines, contributing to neuroinflammation during infection. Despite their critical role in ZIKV pathogenesis, the interplay between ER stress and the antiviral response during infection has not been fully characterized in human microglia. In this work, we show that infection of a human microglia cell line with ZIKV triggers the induction of an antiviral response and the activation of the endonuclease activity of the unfolded protein response sensor IRE1. Interestingly, we observed that both IRE1 and XBP1 were sequestered to the viral replication sites during infection. Moreover, pharmacological inhibition or hyperactivation of the endonuclease activity of IRE1 resulted in reduced viral titers. As such, while inhibition of IRE1 resulted in an increased type-I interferon response, hyperactivation led to a decrease in ZIKV RNA levels and the appearance of ER-derived cytoplasmic structures containing NS3, IRE1, and XBP1. Together, our data indicate that regulation of the endonuclease activity of IRE1 is critical for both ZIKV replication and immune activation, highlighting the potential of the ER stress sensor as a target for the development of antivirals to treat ZIKV infections.
Insights
Zika virus (ZIKV) infection in human microglia activates the unfolded protein response sensor IRE1. Regulating IRE1 endonuclease activity impacts viral replication and immune responses, suggesting it as a potential antiviral target for ZIKV.
Area of Science:
- Neuroscience
- Virology
- Immunology
Background:
- Zika virus (ZIKV) infects human brain cells, including microglia, leading to ER stress and neuroinflammation.
- The interplay between ER stress and antiviral responses in ZIKV-infected microglia is not fully understood.
Purpose of the Study:
- To investigate the role of endoplasmic reticulum (ER) stress, specifically the IRE1 pathway, in ZIKV infection of human microglia.
- To explore the potential of targeting IRE1 for ZIKV antiviral therapies.
Main Methods:
- Infection of a human microglia cell line with ZIKV.
- Analysis of ER stress markers, antiviral responses (type-I interferons, cytokines), and IRE1/XBP1 localization.
- Pharmacological manipulation of IRE1 endonuclease activity.
Main Results:
- ZIKV infection induced antiviral responses and activated IRE1 endonuclease activity in microglia.
- IRE1 and XBP1 localized to viral replication sites.
- Modulating IRE1 activity affected viral titers, interferon response, and ZIKV RNA levels.
Conclusions:
- Regulation of IRE1 endonuclease activity is crucial for ZIKV replication and immune activation in microglia.
- The ER stress sensor IRE1 presents a potential therapeutic target for ZIKV infections.

