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Low-fidelity Venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy

During RNA virus replication, there is the potential to incorporate mutations that affect virulence or pathogenesis. For live-attenuated vaccines, this has implications for stability, as replication may result in mutations that either restore the wild-type phenotype via reversion or compensate for t...

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Autores principales: Kautz, Tiffany F, Guerbois, Mathilde, Khanipov, Kamil, Patterson, Edward I, Langsjoen, Rose M, Yun, Ruimei, Warmbrod, Kelsey L, Fofanov, Yuriy, Weaver, Scott C, Forrester, Naomi L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5841381/
https://www.ncbi.nlm.nih.gov/pubmed/29593882
http://dx.doi.org/10.1093/ve/vey004
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author Kautz, Tiffany F
Guerbois, Mathilde
Khanipov, Kamil
Patterson, Edward I
Langsjoen, Rose M
Yun, Ruimei
Warmbrod, Kelsey L
Fofanov, Yuriy
Weaver, Scott C
Forrester, Naomi L
author_facet Kautz, Tiffany F
Guerbois, Mathilde
Khanipov, Kamil
Patterson, Edward I
Langsjoen, Rose M
Yun, Ruimei
Warmbrod, Kelsey L
Fofanov, Yuriy
Weaver, Scott C
Forrester, Naomi L
author_sort Kautz, Tiffany F
collection PubMed
description During RNA virus replication, there is the potential to incorporate mutations that affect virulence or pathogenesis. For live-attenuated vaccines, this has implications for stability, as replication may result in mutations that either restore the wild-type phenotype via reversion or compensate for the attenuating mutations by increasing virulence (pseudoreversion). Recent studies have demonstrated that altering the mutation rate of an RNA virus is an effective attenuation tool. To validate the safety of low-fidelity mutations to increase vaccine attenuation, several mutations in the RNA-dependent RNA-polymerase (RdRp) were tested in the live-attenuated Venezuelan equine encephalitis virus vaccine strain, TC-83. Next generation sequencing after passage in the presence of mutagens revealed a mutant containing three mutations in the RdRp, TC-83 3x, to have decreased replication fidelity, while a second mutant, TC-83 4x displayed no change in fidelity, but shared many phenotypic characteristics with TC-83 3x. Both mutants exhibited increased, albeit inconsistent attenuation in an infant mouse model, as well as increased immunogenicity and complete protection against lethal challenge of an adult murine model compared with the parent TC-83. During serial passaging in a highly permissive model, the mutants increased in virulence but remained less virulent than the parent TC-83. These results suggest that the incorporation of low-fidelity mutations into the RdRp of live-attenuated vaccines for RNA viruses can confer increased immunogenicity whilst showing some evidence of increased attenuation. However, while in theory such constructs may result in more effective vaccines, the instability of the vaccine phenotype decreases the likelihood of this being an effective vaccine strategy.
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spelling pubmed-58413812018-03-28 Low-fidelity Venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy Kautz, Tiffany F Guerbois, Mathilde Khanipov, Kamil Patterson, Edward I Langsjoen, Rose M Yun, Ruimei Warmbrod, Kelsey L Fofanov, Yuriy Weaver, Scott C Forrester, Naomi L Virus Evol Research Article During RNA virus replication, there is the potential to incorporate mutations that affect virulence or pathogenesis. For live-attenuated vaccines, this has implications for stability, as replication may result in mutations that either restore the wild-type phenotype via reversion or compensate for the attenuating mutations by increasing virulence (pseudoreversion). Recent studies have demonstrated that altering the mutation rate of an RNA virus is an effective attenuation tool. To validate the safety of low-fidelity mutations to increase vaccine attenuation, several mutations in the RNA-dependent RNA-polymerase (RdRp) were tested in the live-attenuated Venezuelan equine encephalitis virus vaccine strain, TC-83. Next generation sequencing after passage in the presence of mutagens revealed a mutant containing three mutations in the RdRp, TC-83 3x, to have decreased replication fidelity, while a second mutant, TC-83 4x displayed no change in fidelity, but shared many phenotypic characteristics with TC-83 3x. Both mutants exhibited increased, albeit inconsistent attenuation in an infant mouse model, as well as increased immunogenicity and complete protection against lethal challenge of an adult murine model compared with the parent TC-83. During serial passaging in a highly permissive model, the mutants increased in virulence but remained less virulent than the parent TC-83. These results suggest that the incorporation of low-fidelity mutations into the RdRp of live-attenuated vaccines for RNA viruses can confer increased immunogenicity whilst showing some evidence of increased attenuation. However, while in theory such constructs may result in more effective vaccines, the instability of the vaccine phenotype decreases the likelihood of this being an effective vaccine strategy. Oxford University Press 2018-03-06 /pmc/articles/PMC5841381/ /pubmed/29593882 http://dx.doi.org/10.1093/ve/vey004 Text en © The Author(s) 2018. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Article
Kautz, Tiffany F
Guerbois, Mathilde
Khanipov, Kamil
Patterson, Edward I
Langsjoen, Rose M
Yun, Ruimei
Warmbrod, Kelsey L
Fofanov, Yuriy
Weaver, Scott C
Forrester, Naomi L
Low-fidelity Venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy
title Low-fidelity Venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy
title_full Low-fidelity Venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy
title_fullStr Low-fidelity Venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy
title_full_unstemmed Low-fidelity Venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy
title_short Low-fidelity Venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy
title_sort low-fidelity venezuelan equine encephalitis virus polymerase mutants to improve live-attenuated vaccine safety and efficacy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5841381/
https://www.ncbi.nlm.nih.gov/pubmed/29593882
http://dx.doi.org/10.1093/ve/vey004
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