Severe acute respiratory syndrome coronavirus spike protein expressed by attenuated vaccinia virus protectively immunizes mice
Белок-шип коронавируса тяжелого острого респираторного синдрома, экспрессируемый аттенуированным вирусом коровьей оспы, обеспечивает защитную иммунизацию мышей
2004-04-19
SCID: 54.1/schntv75
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MVA/S vaccineSARS-CoV spike proteinmodified vaccinia virus Ankaraneutralizing antibodiesprotective immunity
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Abstract (AI)
The spike protein (S), a membrane component of severe acute respiratory syndrome coronavirus (SARS-CoV) is anticipated to be an important component of candidate vaccines. We constructed recombinant forms of the highly attenuated modified vaccinia virus Ankara (MVA) containing the gene encoding full-length SARS-CoV S with and without a C-terminal epitope tag called MVA/S-HA and MVA/S, respectively. Cells infected with MVA/Sor MVA/S-HA synthesized a 200-kDa protein, which was recognized by antibody raised against a synthetic peptide of SARS-CoV S or the epitope tag in Western blot analyses. Further studies indicated that S was N-glycosylated and migrated in SDS polyacrylamide gels with an apparent mass of approximately 160 kDa after treatment with peptide N-glycosidase F. The acquisition of resistance to endoglycosidase H indicated trafficking of S to the medial Golgi compartment, and confocal microscopy showed that S was transported to the cell surface. Intranasal or intramuscular inoculations of BALB/c mice with MVA/S produced serum antibodies that recognized the SARS S in ELISA and neutralized SARS-CoV in vitro. Moreover, MVA/S administered by either route elicited protective immunity, as shown by reduced titers of SARS-CoV in the upper and lower respiratory tracts of mice after challenge. Passive transfer of serum from mice immunized with MVA/S to naïve mice also reduced the replication of SARS-CoV in the respiratory tract after challenge, demonstrating a role for antibody to S in protection. The attenuated nature of MVA and the ability of MVA/S to induce neutralizing antibody that protects mice support further development of this candidate vaccine.
Key Findings
1
Both immunization routes protected mice from SARS-CoV challenge by reducing viral titers in the upper and lower respiratory tracts.
2
Intranasal or intramuscular MVA/S immunization induced SARS-CoV-specific serum antibodies that recognized spike protein and neutralized virus in vitro.
3
MVA-expressed spike protein was N-glycosylated, trafficked through the medial Golgi, and transported to the infected-cell surface.
4
Passive transfer of immune serum reduced respiratory SARS-CoV replication, demonstrating that spike-specific antibodies contributed to protection.
5
Recombinant attenuated MVA vaccines expressing full-length SARS-CoV spike protein, with or without a C-terminal HA tag, were successfully constructed.
Research Object
MVA-based recombinant vaccine expressing the full-length SARS-CoV spike protein and its immunization of BALB/c mice
Research Subject
SARS-CoV-specific antibody responses and protective immunity against respiratory-tract infection after intranasal or intramuscular vaccination
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2004-04-19
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