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Generation, Amplification, and Titration of Recombinant Respiratory Syncytial Viruses
Published on: April 4, 2019
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.
Abstract:
Respiratory syncytial virus (RSV) has been recognized as one of the most common causes of severe respiratory tract infection in infants worldwide. As yet, a safe and effective vaccine has not been developed to protect humans from RSV. The F and G surface proteins have been widely investigated due to their potential to induce protective immunity. In addition, the M2 protein has been shown to be important in inducing a T-cell response. Our project involved the cloning of the immunodominant regions of the RSV F, M2 and G proteins into a bacterial vector, pET-32a (+). The recombinant RFM2G protein was expressed in Escherichia coli and purified using His Bind columns. The purified rRFM2G protein was analyzed by polyacrylamide gel electrophoresis and Western blotting. The predicted structure of the recombinant protein built by the Swiss PDB Viewer program suggested a rod shape with a distinct swollen head and neck which was confirmed by transmission electron microscopy and atomic force microscopy. BALB/c female mice were immunized with either RSV, rRFM2G alone, or rRFM2G in combination with flagellin as a mucosal adjuvant. Serum was collected on days 0, 14, 28 and 49 to assess the immune response by Enzyme-linked immunosorbent assay. Intranasal immunization of mice with the rRFM2G protein yielded significantly high serum IgG titers. Co-administration of the rRFM2G protein with flagellin did not augment the serum antibody response.
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