Expression and characterization of a multivalent human respiratory syncytial virus protein

P Subbarayan1, H Qin, S Pillai

  • 1Center for NanoBiotechnology Research, Alabama State University, 915 South Jackson Street, Montgomery, AL 36101, USA.

Insights

A novel recombinant protein targeting Respiratory Syncytial Virus (RSV) surface proteins F, M2, and G was developed. Intranasal immunization in mice induced significant IgG antibody responses, suggesting potential for RSV vaccine development.

Area of Science:

  • Virology
  • Immunology
  • Protein Engineering

Background:

  • Respiratory Syncytial Virus (RSV) is a major cause of severe infant respiratory infections globally.
  • Currently, no safe and effective human vaccine exists for RSV.
  • RSV surface proteins F, G, and M2 are key targets for inducing protective immunity.

Purpose of the Study:

  • To clone and express immunodominant regions of RSV F, M2, and G proteins.
  • To characterize the recombinant RFM2G protein structure and immunogenicity.
  • To evaluate the efficacy of intranasal immunization with rRFM2G in a mouse model.

Main Methods:

  • Cloning of RSV F, M2, and G immunodominant regions into pET-32a(+) vector.
  • Expression in E. coli, purification via His Bind columns, and analysis by SDS-PAGE and Western blotting.
  • Structural analysis using Swiss PDB Viewer, TEM, and AFM; immunization of BALB/c mice and serum IgG assessment via ELISA.

Main Results:

  • Successfully expressed and purified recombinant RFM2G protein with a confirmed rod-like structure.
  • Intranasal immunization with rRFM2G induced significantly high serum IgG titers in mice.
  • Co-administration with flagellin as a mucosal adjuvant did not enhance the antibody response.

Conclusions:

  • The recombinant RFM2G protein is a promising candidate for RSV vaccine development.
  • Intranasal delivery of rRFM2G elicits a robust systemic antibody response.
  • Flagellin did not provide an additional benefit as a mucosal adjuvant in this context.

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