West Nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host RNAs secreted in extracellular vesicles

Abstract Background Extracellular vesicles (EVs) are small membrane vesicles secreted by the cells that mediate intercellular transfer of molecules and contribute to transduction of various signals. Viral infection and action of pro-inflammatory cytokines has been shown to alter molecular compositio...

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Main Authors: Andrii Slonchak, Brian Clarke, Jason Mackenzie, Alberto Anastacio Amarilla, Yin Xiang Setoh, Alexander A. Khromykh
Format: Article
Language:English
Published: BMC 2019-06-01
Series:BMC Genomics
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12864-019-5835-6
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spelling doaj-c8998c1b46d74040b9273d55be5c679e2020-11-25T03:49:32ZengBMCBMC Genomics1471-21642019-06-0120112110.1186/s12864-019-5835-6West Nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host RNAs secreted in extracellular vesiclesAndrii Slonchak0Brian Clarke1Jason Mackenzie2Alberto Anastacio Amarilla3Yin Xiang Setoh4Alexander A. Khromykh5The Australian Infectious Diseases Centre, School of Chemistry and Molecular Biosciences, The University of QueenslandThe Australian Infectious Diseases Centre, School of Chemistry and Molecular Biosciences, The University of QueenslandThe Peter Doherty Institute for Infection and Immunity, Department of Microbiology and Immunology, The University of MelbourneThe Australian Infectious Diseases Centre, School of Chemistry and Molecular Biosciences, The University of QueenslandThe Australian Infectious Diseases Centre, School of Chemistry and Molecular Biosciences, The University of QueenslandThe Australian Infectious Diseases Centre, School of Chemistry and Molecular Biosciences, The University of QueenslandAbstract Background Extracellular vesicles (EVs) are small membrane vesicles secreted by the cells that mediate intercellular transfer of molecules and contribute to transduction of various signals. Viral infection and action of pro-inflammatory cytokines has been shown to alter molecular composition of EV content. Transfer of antiviral proteins by EVs is thought to contribute to the development of inflammation and antiviral state. Altered incorporation of selected host RNAs into EVs in response to infection has also been demonstrated for several viruses, but not for WNV. Considering the medical significance of flaviviruses and the importance of deeper knowledge about the mechanisms of flavivirus-host interactions we assessed the ability of West Nile virus (WNV) and type I interferon (IFN), the main cytokine regulating antiviral response to WNV, to alter the composition of EV RNA cargo. Results We employed next generation sequencing to perform transcriptome-wide profiling of RNA cargo in EVs produced by cells infected with WNV or exposed to IFN-alpha. RNA profile of EVs secreted by uninfected cells was also determined and used as a reference. We found that WNV infection significantly changed the levels of certain host microRNAs (miRNAs), small noncoding RNAs (sncRNAs) and mRNAs incorporated into EVs. Treatment with IFN-alpha also altered miRNA and mRNA profiles in EV but had less profound effect on sncRNAs. Functional classification of RNAs differentially incorporated into EVs upon infection and in response to IFN-alpha treatment demonstrated association of enriched in EVs mRNAs and miRNAs with viral processes and pro-inflammatory pathways. Further analysis revealed that WNV infection and IFN-alpha treatment changed the levels of common and unique mRNAs and miRNAs in EVs and that IFN-dependent and IFN-independent processes are involved in regulation of RNA sorting into EVs during infection. Conclusions WNV infection and IFN-alpha treatment alter the spectrum and the levels of mRNAs, miRNAs and sncRNAs in EVs. Differentially incorporated mRNAs and miRNAs in EVs produced in response to WNV infection and to IFN-alpha treatment are associated with viral processes and host response to infection. WNV infection affects composition of RNA cargo in EVs via IFN-dependent and IFN-independent mechanisms.http://link.springer.com/article/10.1186/s12864-019-5835-6Extracellular vesiclesExosomesmiRNAWest Nile virusFlavivirussnoRNA
collection DOAJ
language English
format Article
sources DOAJ
author Andrii Slonchak
Brian Clarke
Jason Mackenzie
Alberto Anastacio Amarilla
Yin Xiang Setoh
Alexander A. Khromykh
spellingShingle Andrii Slonchak
Brian Clarke
Jason Mackenzie
Alberto Anastacio Amarilla
Yin Xiang Setoh
Alexander A. Khromykh
West Nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host RNAs secreted in extracellular vesicles
BMC Genomics
Extracellular vesicles
Exosomes
miRNA
West Nile virus
Flavivirus
snoRNA
author_facet Andrii Slonchak
Brian Clarke
Jason Mackenzie
Alberto Anastacio Amarilla
Yin Xiang Setoh
Alexander A. Khromykh
author_sort Andrii Slonchak
title West Nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host RNAs secreted in extracellular vesicles
title_short West Nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host RNAs secreted in extracellular vesicles
title_full West Nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host RNAs secreted in extracellular vesicles
title_fullStr West Nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host RNAs secreted in extracellular vesicles
title_full_unstemmed West Nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host RNAs secreted in extracellular vesicles
title_sort west nile virus infection and interferon alpha treatment alter the spectrum and the levels of coding and noncoding host rnas secreted in extracellular vesicles
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2019-06-01
description Abstract Background Extracellular vesicles (EVs) are small membrane vesicles secreted by the cells that mediate intercellular transfer of molecules and contribute to transduction of various signals. Viral infection and action of pro-inflammatory cytokines has been shown to alter molecular composition of EV content. Transfer of antiviral proteins by EVs is thought to contribute to the development of inflammation and antiviral state. Altered incorporation of selected host RNAs into EVs in response to infection has also been demonstrated for several viruses, but not for WNV. Considering the medical significance of flaviviruses and the importance of deeper knowledge about the mechanisms of flavivirus-host interactions we assessed the ability of West Nile virus (WNV) and type I interferon (IFN), the main cytokine regulating antiviral response to WNV, to alter the composition of EV RNA cargo. Results We employed next generation sequencing to perform transcriptome-wide profiling of RNA cargo in EVs produced by cells infected with WNV or exposed to IFN-alpha. RNA profile of EVs secreted by uninfected cells was also determined and used as a reference. We found that WNV infection significantly changed the levels of certain host microRNAs (miRNAs), small noncoding RNAs (sncRNAs) and mRNAs incorporated into EVs. Treatment with IFN-alpha also altered miRNA and mRNA profiles in EV but had less profound effect on sncRNAs. Functional classification of RNAs differentially incorporated into EVs upon infection and in response to IFN-alpha treatment demonstrated association of enriched in EVs mRNAs and miRNAs with viral processes and pro-inflammatory pathways. Further analysis revealed that WNV infection and IFN-alpha treatment changed the levels of common and unique mRNAs and miRNAs in EVs and that IFN-dependent and IFN-independent processes are involved in regulation of RNA sorting into EVs during infection. Conclusions WNV infection and IFN-alpha treatment alter the spectrum and the levels of mRNAs, miRNAs and sncRNAs in EVs. Differentially incorporated mRNAs and miRNAs in EVs produced in response to WNV infection and to IFN-alpha treatment are associated with viral processes and host response to infection. WNV infection affects composition of RNA cargo in EVs via IFN-dependent and IFN-independent mechanisms.
topic Extracellular vesicles
Exosomes
miRNA
West Nile virus
Flavivirus
snoRNA
url http://link.springer.com/article/10.1186/s12864-019-5835-6
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