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Directed molecular evolution improves the immunogenicity and protective efficacy of a Venezuelan equine encephalitis virus DNA vaccine
Authors:Lesley C. Dupuy  Christopher P. Locher  Madan Paidhungat  Michelle J. Richards  Cathleen M. Lind  Russell Bakken  Michael D. Parker  Robert G. Whalen  Connie S. Schmaljohn
Affiliation:1. Virology Division, United States Army Medical Research Institute of Infectious Diseases, Fort Detrick, MD 21702, United States;2. Science and Technology, United States Army Medical Research Institute of Infectious Diseases, 1301 Ditto Ave., Fort Detrick, MD 21702, United States;3. Maxygen, Inc., Redwood City, CA 94063, United States
Abstract:
We employed directed molecular evolution to improve the cross-reactivity and immunogenicity of the Venezuelan equine encephalitis virus (VEEV) envelope glycoproteins. The DNA encoding the E1 and E2 proteins from VEEV subtypes IA/B and IE, Mucambo virus (MUCV), and eastern and western equine encephalitis viruses (EEEV and WEEV) were recombined in vitro to create libraries of chimeric genes expressing variant envelope proteins. ELISAs specific for all five parent viruses were used in high-throughput screening to identify those recombinant DNAs that demonstrated cross-reactivity to VEEV, MUCV, EEEV, and WEEV after administration as plasmid vaccines in mice. Selected variants were then used to vaccinate larger cohorts of mice and their sera were assayed by both ELISA and by plaque reduction neutralization test (PRNT). Representative variants from a library in which the E1 gene from VEEV IA/B was held constant and only the E2 genes of the five parent viruses were recombined elicited significantly increased neutralizing antibody titers to VEEV IA/B compared to the parent DNA vaccine and provided improved protection against aerosol VEEV IA/B challenge. Our results indicate that it is possible to improve the immunogenicity and protective efficacy of alphavirus DNA vaccines using directed molecular evolution.
Keywords:Venezuelan equine encephalitis virus   DNA vaccine   Directed molecular evolution
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