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
Bernard Moss, Peter L. Collins, Alexander Bukreyev, Kanta Subbarao, Leatrice Vogel, Brian R. Murphy, Anjeanette Roberts, Himani Bisht
2004-04-19

MVA/S vaccineSARS-CoV spike proteinmodified vaccinia virus Ankaraneutralizing antibodiesprotective immunity
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.
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.

MVA-based recombinant vaccine expressing the full-length SARS-CoV spike protein and its immunization of BALB/c mice

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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Bernard Moss
Peter L. Collins
Alexander Bukreyev
Kanta Subbarao
Leatrice Vogel
Brian R. Murphy
Anjeanette Roberts
Himani Bisht
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