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A Rapid and Improved Method to Generate Recombinant Dengue Virus Vaccine Candidates

Dengue is one of the most important mosquito-borne infections accounting for severe morbidity and mortality worldwide. Recently, the tetravalent chimeric live attenuated Dengue vaccine Dengvaxia(®) was approved for use in several dengue endemic countries. In general, live attenuated vaccines (LAV) a...

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Autores principales: Govindarajan, Dhanasekaran, Guan, Liming, Meschino, Steven, Fridman, Arthur, Bagchi, Ansu, Pak, Irene, ter Meulen, Jan, Casimiro, Danilo R., Bett, Andrew J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4805244/
https://www.ncbi.nlm.nih.gov/pubmed/27008550
http://dx.doi.org/10.1371/journal.pone.0152209
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author Govindarajan, Dhanasekaran
Guan, Liming
Meschino, Steven
Fridman, Arthur
Bagchi, Ansu
Pak, Irene
ter Meulen, Jan
Casimiro, Danilo R.
Bett, Andrew J.
author_facet Govindarajan, Dhanasekaran
Guan, Liming
Meschino, Steven
Fridman, Arthur
Bagchi, Ansu
Pak, Irene
ter Meulen, Jan
Casimiro, Danilo R.
Bett, Andrew J.
author_sort Govindarajan, Dhanasekaran
collection PubMed
description Dengue is one of the most important mosquito-borne infections accounting for severe morbidity and mortality worldwide. Recently, the tetravalent chimeric live attenuated Dengue vaccine Dengvaxia(®) was approved for use in several dengue endemic countries. In general, live attenuated vaccines (LAV) are very efficacious and offer long-lasting immunity against virus-induced disease. Rationally designed LAVs can be generated through reverse genetics technology, a method of generating infectious recombinant viruses from full length cDNA contained in bacterial plasmids. In vitro transcribed (IVT) viral RNA from these infectious clones is transfected into susceptible cells to generate recombinant virus. However, the generation of full-length dengue virus cDNA clones can be difficult due to the genetic instability of viral sequences in bacterial plasmids. To circumvent the need for a single plasmid containing a full length cDNA, in vitro ligation of two or three cDNA fragments contained in separate plasmids can be used to generate a full-length dengue viral cDNA template. However, in vitro ligation of multiple fragments often yields low quality template for IVT reactions, resulting in inconsistent low yield RNA. These technical difficulties make recombinant virus recovery less efficient. In this study, we describe a simple, rapid and efficient method of using LONG-PCR to recover recombinant chimeric Yellow fever dengue (CYD) viruses as potential dengue vaccine candidates. Using this method, we were able to efficiently generate several viable recombinant viruses without introducing any artificial mutations into the viral genomes. We believe that the techniques reported here will enable rapid and efficient recovery of recombinant flaviviruses for evaluation as vaccine candidates and, be applicable to the recovery of other RNA viruses.
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spelling pubmed-48052442016-03-25 A Rapid and Improved Method to Generate Recombinant Dengue Virus Vaccine Candidates Govindarajan, Dhanasekaran Guan, Liming Meschino, Steven Fridman, Arthur Bagchi, Ansu Pak, Irene ter Meulen, Jan Casimiro, Danilo R. Bett, Andrew J. PLoS One Research Article Dengue is one of the most important mosquito-borne infections accounting for severe morbidity and mortality worldwide. Recently, the tetravalent chimeric live attenuated Dengue vaccine Dengvaxia(®) was approved for use in several dengue endemic countries. In general, live attenuated vaccines (LAV) are very efficacious and offer long-lasting immunity against virus-induced disease. Rationally designed LAVs can be generated through reverse genetics technology, a method of generating infectious recombinant viruses from full length cDNA contained in bacterial plasmids. In vitro transcribed (IVT) viral RNA from these infectious clones is transfected into susceptible cells to generate recombinant virus. However, the generation of full-length dengue virus cDNA clones can be difficult due to the genetic instability of viral sequences in bacterial plasmids. To circumvent the need for a single plasmid containing a full length cDNA, in vitro ligation of two or three cDNA fragments contained in separate plasmids can be used to generate a full-length dengue viral cDNA template. However, in vitro ligation of multiple fragments often yields low quality template for IVT reactions, resulting in inconsistent low yield RNA. These technical difficulties make recombinant virus recovery less efficient. In this study, we describe a simple, rapid and efficient method of using LONG-PCR to recover recombinant chimeric Yellow fever dengue (CYD) viruses as potential dengue vaccine candidates. Using this method, we were able to efficiently generate several viable recombinant viruses without introducing any artificial mutations into the viral genomes. We believe that the techniques reported here will enable rapid and efficient recovery of recombinant flaviviruses for evaluation as vaccine candidates and, be applicable to the recovery of other RNA viruses. Public Library of Science 2016-03-23 /pmc/articles/PMC4805244/ /pubmed/27008550 http://dx.doi.org/10.1371/journal.pone.0152209 Text en © 2016 Govindarajan et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Govindarajan, Dhanasekaran
Guan, Liming
Meschino, Steven
Fridman, Arthur
Bagchi, Ansu
Pak, Irene
ter Meulen, Jan
Casimiro, Danilo R.
Bett, Andrew J.
A Rapid and Improved Method to Generate Recombinant Dengue Virus Vaccine Candidates
title A Rapid and Improved Method to Generate Recombinant Dengue Virus Vaccine Candidates
title_full A Rapid and Improved Method to Generate Recombinant Dengue Virus Vaccine Candidates
title_fullStr A Rapid and Improved Method to Generate Recombinant Dengue Virus Vaccine Candidates
title_full_unstemmed A Rapid and Improved Method to Generate Recombinant Dengue Virus Vaccine Candidates
title_short A Rapid and Improved Method to Generate Recombinant Dengue Virus Vaccine Candidates
title_sort rapid and improved method to generate recombinant dengue virus vaccine candidates
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4805244/
https://www.ncbi.nlm.nih.gov/pubmed/27008550
http://dx.doi.org/10.1371/journal.pone.0152209
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