Activation of CXCL-8 Transcription by Hepatitis E Virus ORF-1 via AP-1

Hepatitis E virus (HEV) is a small nonenveloped single-stranded positive-sense RNA virus and is one of the major causes for acute hepatitis worldwide. CXCL-8 is a small multifunctional proinflammatory chemokine. It was reported recently that HEV infection significantly upregulates CXCL-8 gene expres...

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Main Authors: Zhubing Li, Lu Chen, Qiang Liu
Format: Article
Language:English
Published: Hindawi Limited 2015-01-01
Series:Mediators of Inflammation
Online Access:http://dx.doi.org/10.1155/2015/495370
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spelling doaj-30248121b0664bed9ef836fbbaf45ed42020-11-24T23:50:23ZengHindawi LimitedMediators of Inflammation0962-93511466-18612015-01-01201510.1155/2015/495370495370Activation of CXCL-8 Transcription by Hepatitis E Virus ORF-1 via AP-1Zhubing Li0Lu Chen1Qiang Liu2VIDO-InterVac, Vaccinology and Immunotherapeutics Program, University of Saskatchewan, Saskatoon, SK, S7N 5E3, CanadaVIDO-InterVac, University of Saskatchewan, Saskatoon, SK, S7N 5E3, CanadaVIDO-InterVac, Vaccinology and Immunotherapeutics Program, Veterinary Microbiology, University of Saskatchewan, Saskatoon, SK, S7N 5E3, CanadaHepatitis E virus (HEV) is a small nonenveloped single-stranded positive-sense RNA virus and is one of the major causes for acute hepatitis worldwide. CXCL-8 is a small multifunctional proinflammatory chemokine. It was reported recently that HEV infection significantly upregulates CXCL-8 gene expression. In this study, we investigated the mechanism of HEV-induced CXCL-8 transcriptional activation. Using CXCL-8 promoter reporters of different lengths ranging from −1400 to −173, we showed that −173 promoter has the highest promoter activity in the presence of HEV genomic RNA, indicating that the −173 promoter contains sequences responsible for CXCL-8 activation by HEV. Ectopic expression of the ORF-1 protein can upregulate the −173 CXCL-8 promoter activity. In contrast, expression of the ORF-2 protein suppresses the CXCL-8 promoter activity and expression of the ORF-3 protein has no effect on the CXCL-8 promoter activity. We further showed that AP-1 is required for CXCL-8 activation because neither HEV genomic RNA nor the ORF-1 protein can upregulate the −173 CXCL-8 promoter in the absence of the AP-1 binding sequence. Taken together, our results showed that HEV and HEV ORF-1 protein activate the CXCL-8 promoter via AP-1. This novel function of HEV ORF-1 protein should contribute to our understanding of HEV-host interactions and HEV-associated pathogenesis.http://dx.doi.org/10.1155/2015/495370
collection DOAJ
language English
format Article
sources DOAJ
author Zhubing Li
Lu Chen
Qiang Liu
spellingShingle Zhubing Li
Lu Chen
Qiang Liu
Activation of CXCL-8 Transcription by Hepatitis E Virus ORF-1 via AP-1
Mediators of Inflammation
author_facet Zhubing Li
Lu Chen
Qiang Liu
author_sort Zhubing Li
title Activation of CXCL-8 Transcription by Hepatitis E Virus ORF-1 via AP-1
title_short Activation of CXCL-8 Transcription by Hepatitis E Virus ORF-1 via AP-1
title_full Activation of CXCL-8 Transcription by Hepatitis E Virus ORF-1 via AP-1
title_fullStr Activation of CXCL-8 Transcription by Hepatitis E Virus ORF-1 via AP-1
title_full_unstemmed Activation of CXCL-8 Transcription by Hepatitis E Virus ORF-1 via AP-1
title_sort activation of cxcl-8 transcription by hepatitis e virus orf-1 via ap-1
publisher Hindawi Limited
series Mediators of Inflammation
issn 0962-9351
1466-1861
publishDate 2015-01-01
description Hepatitis E virus (HEV) is a small nonenveloped single-stranded positive-sense RNA virus and is one of the major causes for acute hepatitis worldwide. CXCL-8 is a small multifunctional proinflammatory chemokine. It was reported recently that HEV infection significantly upregulates CXCL-8 gene expression. In this study, we investigated the mechanism of HEV-induced CXCL-8 transcriptional activation. Using CXCL-8 promoter reporters of different lengths ranging from −1400 to −173, we showed that −173 promoter has the highest promoter activity in the presence of HEV genomic RNA, indicating that the −173 promoter contains sequences responsible for CXCL-8 activation by HEV. Ectopic expression of the ORF-1 protein can upregulate the −173 CXCL-8 promoter activity. In contrast, expression of the ORF-2 protein suppresses the CXCL-8 promoter activity and expression of the ORF-3 protein has no effect on the CXCL-8 promoter activity. We further showed that AP-1 is required for CXCL-8 activation because neither HEV genomic RNA nor the ORF-1 protein can upregulate the −173 CXCL-8 promoter in the absence of the AP-1 binding sequence. Taken together, our results showed that HEV and HEV ORF-1 protein activate the CXCL-8 promoter via AP-1. This novel function of HEV ORF-1 protein should contribute to our understanding of HEV-host interactions and HEV-associated pathogenesis.
url http://dx.doi.org/10.1155/2015/495370
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AT luchen activationofcxcl8transcriptionbyhepatitisevirusorf1viaap1
AT qiangliu activationofcxcl8transcriptionbyhepatitisevirusorf1viaap1
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