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HELZ2 Is an IFN Effector Mediating Suppression of Dengue Virus

Flaviviral infections including dengue virus are an increasing clinical problem worldwide. Dengue infection triggers host production of the type 1 IFN, IFN alpha, one of the strongest and broadest acting antivirals known. However, dengue virus subverts host IFN signaling at early steps of IFN signal...

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Autores principales: Fusco, Dahlene N., Pratt, Henry, Kandilas, Stephen, Cheon, Scarlett Se Yun, Lin, Wenyu, Cronkite, D. Alex, Basavappa, Megha, Jeffrey, Kate L., Anselmo, Anthony, Sadreyev, Ruslan, Yapp, Clarence, Shi, Xu, O'Sullivan, John F., Gerszten, Robert E., Tomaru, Takuya, Yoshino, Satoshi, Satoh, Tetsurou, Chung, Raymond T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5316548/
https://www.ncbi.nlm.nih.gov/pubmed/28265266
http://dx.doi.org/10.3389/fmicb.2017.00240
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author Fusco, Dahlene N.
Pratt, Henry
Kandilas, Stephen
Cheon, Scarlett Se Yun
Lin, Wenyu
Cronkite, D. Alex
Basavappa, Megha
Jeffrey, Kate L.
Anselmo, Anthony
Sadreyev, Ruslan
Yapp, Clarence
Shi, Xu
O'Sullivan, John F.
Gerszten, Robert E.
Tomaru, Takuya
Yoshino, Satoshi
Satoh, Tetsurou
Chung, Raymond T.
author_facet Fusco, Dahlene N.
Pratt, Henry
Kandilas, Stephen
Cheon, Scarlett Se Yun
Lin, Wenyu
Cronkite, D. Alex
Basavappa, Megha
Jeffrey, Kate L.
Anselmo, Anthony
Sadreyev, Ruslan
Yapp, Clarence
Shi, Xu
O'Sullivan, John F.
Gerszten, Robert E.
Tomaru, Takuya
Yoshino, Satoshi
Satoh, Tetsurou
Chung, Raymond T.
author_sort Fusco, Dahlene N.
collection PubMed
description Flaviviral infections including dengue virus are an increasing clinical problem worldwide. Dengue infection triggers host production of the type 1 IFN, IFN alpha, one of the strongest and broadest acting antivirals known. However, dengue virus subverts host IFN signaling at early steps of IFN signal transduction. This subversion allows unbridled viral replication which subsequently triggers ongoing production of IFN which, again, is subverted. Identification of downstream IFN antiviral effectors will provide targets which could be activated to restore broad acting antiviral activity, stopping the signal to produce endogenous IFN at toxic levels. To this end, we performed a targeted functional genomic screen for IFN antiviral effector genes (IEGs), identifying 56 IEGs required for antiviral effects of IFN against fully infectious dengue virus. Dengue IEGs were enriched for genes encoding nuclear receptor interacting proteins, including HELZ2, MAP2K4, SLC27A2, HSP90AA1, and HSP90AB1. We focused on HELZ2 (Helicase With Zinc Finger 2), an IFN stimulated gene and IEG which encodes a promiscuous nuclear factor coactivator that exists in two isoforms. The two unique HELZ2 isoforms are both IFN responsive, contain ISRE elements, and gene products increase in the nucleus upon IFN stimulation. Chromatin immunoprecipitation-sequencing revealed that the HELZ2 complex interacts with triglyceride-regulator LMF1. Mass spectrometry revealed that HELZ2 knockdown cells are depleted of triglyceride subsets. We thus sought to determine whether HELZ2 interacts with a nuclear receptor known to regulate immune response and lipid metabolism, AHR, and identified HELZ2:AHR interactions via co-immunoprecipitation, found that AHR is a dengue IEG, and that an AHR ligand, FICZ, exhibits anti-dengue activity. Primary bone marrow derived macrophages from HELZ2 knockout mice, compared to wild type controls, exhibit enhanced dengue infectivity. Overall, these findings reveal that IFN antiviral response is mediated by HELZ2 transcriptional upregulation, enrichment of HELZ2 protein levels in the nucleus, and activation of a transcriptional program that appears to modulate intracellular lipid state. IEGs identified in this study may serve as both (1) potential targets for host directed antiviral design, downstream of the common flaviviral subversion point, as well as (2) possible biomarkers, whose variation, natural, or iatrogenic, could affect host response to viral infections.
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spelling pubmed-53165482017-03-06 HELZ2 Is an IFN Effector Mediating Suppression of Dengue Virus Fusco, Dahlene N. Pratt, Henry Kandilas, Stephen Cheon, Scarlett Se Yun Lin, Wenyu Cronkite, D. Alex Basavappa, Megha Jeffrey, Kate L. Anselmo, Anthony Sadreyev, Ruslan Yapp, Clarence Shi, Xu O'Sullivan, John F. Gerszten, Robert E. Tomaru, Takuya Yoshino, Satoshi Satoh, Tetsurou Chung, Raymond T. Front Microbiol Microbiology Flaviviral infections including dengue virus are an increasing clinical problem worldwide. Dengue infection triggers host production of the type 1 IFN, IFN alpha, one of the strongest and broadest acting antivirals known. However, dengue virus subverts host IFN signaling at early steps of IFN signal transduction. This subversion allows unbridled viral replication which subsequently triggers ongoing production of IFN which, again, is subverted. Identification of downstream IFN antiviral effectors will provide targets which could be activated to restore broad acting antiviral activity, stopping the signal to produce endogenous IFN at toxic levels. To this end, we performed a targeted functional genomic screen for IFN antiviral effector genes (IEGs), identifying 56 IEGs required for antiviral effects of IFN against fully infectious dengue virus. Dengue IEGs were enriched for genes encoding nuclear receptor interacting proteins, including HELZ2, MAP2K4, SLC27A2, HSP90AA1, and HSP90AB1. We focused on HELZ2 (Helicase With Zinc Finger 2), an IFN stimulated gene and IEG which encodes a promiscuous nuclear factor coactivator that exists in two isoforms. The two unique HELZ2 isoforms are both IFN responsive, contain ISRE elements, and gene products increase in the nucleus upon IFN stimulation. Chromatin immunoprecipitation-sequencing revealed that the HELZ2 complex interacts with triglyceride-regulator LMF1. Mass spectrometry revealed that HELZ2 knockdown cells are depleted of triglyceride subsets. We thus sought to determine whether HELZ2 interacts with a nuclear receptor known to regulate immune response and lipid metabolism, AHR, and identified HELZ2:AHR interactions via co-immunoprecipitation, found that AHR is a dengue IEG, and that an AHR ligand, FICZ, exhibits anti-dengue activity. Primary bone marrow derived macrophages from HELZ2 knockout mice, compared to wild type controls, exhibit enhanced dengue infectivity. Overall, these findings reveal that IFN antiviral response is mediated by HELZ2 transcriptional upregulation, enrichment of HELZ2 protein levels in the nucleus, and activation of a transcriptional program that appears to modulate intracellular lipid state. IEGs identified in this study may serve as both (1) potential targets for host directed antiviral design, downstream of the common flaviviral subversion point, as well as (2) possible biomarkers, whose variation, natural, or iatrogenic, could affect host response to viral infections. Frontiers Media S.A. 2017-02-20 /pmc/articles/PMC5316548/ /pubmed/28265266 http://dx.doi.org/10.3389/fmicb.2017.00240 Text en Copyright © 2017 Fusco, Pratt, Kandilas, Cheon, Lin, Cronkite, Basavappa, Jeffrey, Anselmo, Sadreyev, Yapp, Shi, O'Sullivan, Gerszten, Tomaru, Yoshino, Satoh and Chung. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Fusco, Dahlene N.
Pratt, Henry
Kandilas, Stephen
Cheon, Scarlett Se Yun
Lin, Wenyu
Cronkite, D. Alex
Basavappa, Megha
Jeffrey, Kate L.
Anselmo, Anthony
Sadreyev, Ruslan
Yapp, Clarence
Shi, Xu
O'Sullivan, John F.
Gerszten, Robert E.
Tomaru, Takuya
Yoshino, Satoshi
Satoh, Tetsurou
Chung, Raymond T.
HELZ2 Is an IFN Effector Mediating Suppression of Dengue Virus
title HELZ2 Is an IFN Effector Mediating Suppression of Dengue Virus
title_full HELZ2 Is an IFN Effector Mediating Suppression of Dengue Virus
title_fullStr HELZ2 Is an IFN Effector Mediating Suppression of Dengue Virus
title_full_unstemmed HELZ2 Is an IFN Effector Mediating Suppression of Dengue Virus
title_short HELZ2 Is an IFN Effector Mediating Suppression of Dengue Virus
title_sort helz2 is an ifn effector mediating suppression of dengue virus
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5316548/
https://www.ncbi.nlm.nih.gov/pubmed/28265266
http://dx.doi.org/10.3389/fmicb.2017.00240
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