4.8 Article

A live RSV vaccine with engineered thermostability is immunogenic in cotton rats despite high attenuation

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NATURE COMMUNICATIONS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms13916

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资金

  1. Emory Children's Center for Childhood Infections and Vaccines (CCIV)
  2. Emory University
  3. Children's Healthcare of Atlanta
  4. Georgia Research Alliance
  5. Center for AIDS Research at Emory University [P30 AI050409]
  6. James B. Pendleton Charitable Trust
  7. NIH [R21 AI101775, R01 GM114561]
  8. NSF [0923395, S10 RR025679]
  9. Division of Microbiology and Infectious Diseases (DMID) of the National Institute of Allergy and Infectious Diseases (NIAID) [HHSN272201000004I]
  10. [R01 AI087798]
  11. [U19 AI095227]
  12. [T32 AI074492]
  13. [K12 HD072245]

向作者/读者索取更多资源

Respiratory syncytial virus (RSV) is a leading cause of infant hospitalization and there remains no pediatric vaccine. RSV live-attenuated vaccines (LAVs) have a history of safe testing in infants; however, achieving an effective balance of attenuation and immunogenicity has proven challenging. Here we seek to engineer an RSV LAV with enhanced immunogenicity. Genetic mapping identifies strain line 19 fusion (F) protein residues that correlate with pre-fusion antigen maintenance by ELISA and thermal stability of infectivity in live RSV. We generate a LAV candidate named OE4 which expresses line 19F and is attenuated by codon-deoptimization of non-structural (NS1 and NS2) genes, deletion of the small hydrophobic (SH) gene, codon-deoptimization of the attachment (G) gene and ablation of the secreted form of G. OE4 (RSV-A2-dNS1-dNS2-Delta SH-dG(m)-Gs(null)-line19F) exhibits elevated pre-fusion antigen levels, thermal stability, immunogenicity, and efficacy despite heavy attenuation in the upper and lower airways of cotton rats.

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