Enterovirus A71 DNA-Launched Infectious Clone as a Robust Reverse Genetic Tool.

Enterovirus A71 (EV-A71) causes major outbreaks of hand, foot and mouth disease, and is occasionally associated with neurological complications and death in children. Reverse genetics is widely used in the field of virology for functional study of viral genes. For EV-A71, such tools are limited to c...

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Main Authors: Chee Wah Tan, Han Kang Tee, Michelle Hui Pheng Lee, I-Ching Sam, Yoke Fun Chan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5019408?pdf=render
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author Chee Wah Tan
Han Kang Tee
Michelle Hui Pheng Lee
I-Ching Sam
Yoke Fun Chan
author_facet Chee Wah Tan
Han Kang Tee
Michelle Hui Pheng Lee
I-Ching Sam
Yoke Fun Chan
author_sort Chee Wah Tan
collection DOAJ
description Enterovirus A71 (EV-A71) causes major outbreaks of hand, foot and mouth disease, and is occasionally associated with neurological complications and death in children. Reverse genetics is widely used in the field of virology for functional study of viral genes. For EV-A71, such tools are limited to clones that are transcriptionally controlled by T7/SP6 bacteriophage promoter. This is often time-consuming and expensive. Here, we describe the development of infectious plasmid DNA-based EV-A71 clones, for which EV-A71 genome expression is under transcriptional control by the CMV-intermediate early promoter and SV40 transcriptional-termination signal. Transfection of this EV-A71 infectious DNA produces good virus yield similar to in vitro-transcribed EV-A71 infectious RNA, 6.4 and 5.8 log10PFU/ml, respectively. Infectious plasmid with enhanced green fluorescence protein and Nano luciferase reporter genes also produced good virus titers, with 4.3 and 5.0 log10 PFU/ml, respectively. Another infectious plasmid with both CMV and T7 promoters was also developed for easy manipulation of in vitro transcription or direct plasmid transfection. Transfection with either dual-promoter infectious plasmid DNA or infectious RNA derived from this dual-promoter clone produced infectious viral particles. Incorporation of hepatitis delta virus ribozyme, which yields precise 3' ends of the DNA-launched EV-A71 genomic transcripts, increased infectious viral production. In contrast, the incorporation of hammerhead ribozyme in the DNA-launched EV-A71 resulted in lower virus yield, but improved the virus titers for T7 promoter-derived infectious RNA. This study describes rapid and robust reverse genetic tools for EV-A71.
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spelling doaj.art-badda5eee3da4f8291ab2539a7cfb8c02022-12-22T01:55:14ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01119e016277110.1371/journal.pone.0162771Enterovirus A71 DNA-Launched Infectious Clone as a Robust Reverse Genetic Tool.Chee Wah TanHan Kang TeeMichelle Hui Pheng LeeI-Ching SamYoke Fun ChanEnterovirus A71 (EV-A71) causes major outbreaks of hand, foot and mouth disease, and is occasionally associated with neurological complications and death in children. Reverse genetics is widely used in the field of virology for functional study of viral genes. For EV-A71, such tools are limited to clones that are transcriptionally controlled by T7/SP6 bacteriophage promoter. This is often time-consuming and expensive. Here, we describe the development of infectious plasmid DNA-based EV-A71 clones, for which EV-A71 genome expression is under transcriptional control by the CMV-intermediate early promoter and SV40 transcriptional-termination signal. Transfection of this EV-A71 infectious DNA produces good virus yield similar to in vitro-transcribed EV-A71 infectious RNA, 6.4 and 5.8 log10PFU/ml, respectively. Infectious plasmid with enhanced green fluorescence protein and Nano luciferase reporter genes also produced good virus titers, with 4.3 and 5.0 log10 PFU/ml, respectively. Another infectious plasmid with both CMV and T7 promoters was also developed for easy manipulation of in vitro transcription or direct plasmid transfection. Transfection with either dual-promoter infectious plasmid DNA or infectious RNA derived from this dual-promoter clone produced infectious viral particles. Incorporation of hepatitis delta virus ribozyme, which yields precise 3' ends of the DNA-launched EV-A71 genomic transcripts, increased infectious viral production. In contrast, the incorporation of hammerhead ribozyme in the DNA-launched EV-A71 resulted in lower virus yield, but improved the virus titers for T7 promoter-derived infectious RNA. This study describes rapid and robust reverse genetic tools for EV-A71.http://europepmc.org/articles/PMC5019408?pdf=render
spellingShingle Chee Wah Tan
Han Kang Tee
Michelle Hui Pheng Lee
I-Ching Sam
Yoke Fun Chan
Enterovirus A71 DNA-Launched Infectious Clone as a Robust Reverse Genetic Tool.
PLoS ONE
title Enterovirus A71 DNA-Launched Infectious Clone as a Robust Reverse Genetic Tool.
title_full Enterovirus A71 DNA-Launched Infectious Clone as a Robust Reverse Genetic Tool.
title_fullStr Enterovirus A71 DNA-Launched Infectious Clone as a Robust Reverse Genetic Tool.
title_full_unstemmed Enterovirus A71 DNA-Launched Infectious Clone as a Robust Reverse Genetic Tool.
title_short Enterovirus A71 DNA-Launched Infectious Clone as a Robust Reverse Genetic Tool.
title_sort enterovirus a71 dna launched infectious clone as a robust reverse genetic tool
url http://europepmc.org/articles/PMC5019408?pdf=render
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