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Improved Prefusion Stability, Optimized Codon Usage, and Augmented Virion Packaging Enhance the Immunogenicity of Respiratory Syncytial Virus Fusion Protein in a Vectored-Vaccine Candidate.

J Virol.. 2017-07; 
Liang B, Ngwuta JO, Surman S, Kabatova B, Liu X, Lingemann M, Liu X, Yang L, Herbert R, Swerczek J, Chen M, Moin SM, Kumar A, McLellan JS, Kwong PD, Graham BS, Collins PL, Munir S.
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Codon Optimization ... 1 are as follows: 149 Construct (ii), GA, and (viii), GS, are parallel constructs that encode HEK RSV F that has been 150 codon optimized by, respectively, GeneArt and GenScript. Thus, these two constructs compare 151 the effects of GA versus GS. … Get A Quote

摘要

Respiratory syncytial virus (RSV) is the most important viral agent of severe pediatric respiratory tract disease worldwide, but it lacks a licensed vaccine or suitable antiviral drug. A live attenuated chimeric bovine/human parainfluenza virus type 3 (rB/HPIV3) was developed previously as a vector expressing RSV fusion (F) protein to confer bivalent protection against RSV and HPIV3. In a previous clinical trial in virus-naive children, rB/HPIV3 was well tolerated but the immunogenicity of wild-type RSV F was unsatisfactory. We previously modified RSV F with a designed disulfide bond (DS) to increase stability in the prefusion (pre-F) conformation and to be efficiently packaged in the vector virion. Here, we fu... More

关键词

bronchiolitis; fusion protein; human parainfluenza virus type 3; intranasal vaccine; live attenuated vaccine; live vaccine; pneumonia; prefusion; respiratory syncytial virus