Prior Immunization with Severe Acute Respiratory Syndrome (SARS)-Associated Coronavirus (SARS-CoV) Nucleocapsid Protein Causes Severe Pneumonia in Mice Infected with SARS-CoV

Предшествующая иммунизация нуклеокапсидным белком коронавируса, ассоциированного с тяжелым острым респираторным синдромом (SARS-CoV), вызывает тяжелую пневмонию у мышей, инфицированных SARS-CoV
Fumihiko Yasui, Chieko Kai, Masahiro Kitabatake, Shingo Inoue, Misako Yoneda, Shoji Yokochi, Ryoichi Kase, Satoshi Sekiguchi, Kouichi Morita, Tsunekazu Hishima, Hidenori Suzuki, Katsuo Karamatsu, Yasuhiro Yasutomi, Hisatoshi Shida, Minoru Kidokoro, Kyosuke Mizuno, Kouji Matsushima, Michinori Kohara
2008-11-01

BALB/c miceSARS-CoV nucleocapsid proteinTh1/Th2 cytokinesrecombinant vaccinia virussevere pneumonia
The details of the mechanism by which severe acute respiratory syndrome-associated coronavirus (SARS-CoV) causes severe pneumonia are unclear. We investigated the immune responses and pathologies of SARS-CoV-infected BALB/c mice that were immunized intradermally with recombinant vaccinia virus (VV) that expressed either the SARS-CoV spike (S) protein (LC16m8rVV-S) or simultaneously all the structural proteins, including the nucleocapsid (N), membrane (M), envelope (E), and S proteins (LC16m8rVV-NMES) 7-8 wk before intranasal SARS-CoV infection. The LC16m8rVV-NMES-immunized group exhibited as severe pneumonia as the control groups, although LC16m8rVV-NMES significantly decreased the pulmonary SARS-CoV titer to the same extent as LC16m8rVV-S. To identify the cause of the exacerbated pneumonia, BALB/c mice were immunized with recombinant VV that expressed the individual structural proteins of SARS-CoV (LC16mOrVV-N, -M, -E, -S) with or without LC16mOrVV-S (i.e., LC16mOrVV-N, LC16mOrVV-M, LC16mOrVV-E, or LC16mOrVV-S alone or LC16mOrVV-N + LC16mOrVV-S, LC16mOrVV-M + LC16mOrVV-S, or LC16mOrVV-E + LC16mOrVV-S), and infected with SARS-CoV more than 4 wk later. Both LC16mOrVV-N-immunized mice and LC16mOrVV-N + LC16mOrVV-S-immunized mice exhibited severe pneumonia. Furthermore, LC16mOrVV-N-immunized mice upon infection exhibited significant up-regulation of both Th1 (IFN-gamma, IL-2) and Th2 (IL-4, IL-5) cytokines and down-regulation of anti-inflammatory cytokines (IL-10, TGF-beta), resulting in robust infiltration of neutrophils, eosinophils, and lymphocytes into the lung, as well as thickening of the alveolar epithelium. These results suggest that an excessive host immune response against the nucleocapsid protein of SARS-CoV is involved in severe pneumonia caused by SARS-CoV infection. These findings increase our understanding of the pathogenesis of SARS.
1
Immunization expressing all structural proteins reduced pulmonary viral titers but failed to prevent severe pneumonia, unlike spike-focused immunization.
2
Nucleocapsid immunization alone or combined with spike immunization reproduced the severe-pneumonia phenotype.
3
Nucleocapsid-immunized mice showed simultaneous Th1 and Th2 cytokine upregulation, reduced IL-10 and TGF-beta, and extensive pulmonary leukocyte infiltration.
4
Prior immunization with SARS-CoV nucleocapsid protein caused severe pneumonia in mice after SARS-CoV infection.
5
The findings implicate an excessive immune response against SARS-CoV nucleocapsid protein in infection-associated severe pneumonia.

SARS-CoV-infected BALB/c mice previously immunized with SARS-CoV structural proteins, particularly the nucleocapsid protein

The role of excessive host immune responses against the SARS-CoV nucleocapsid protein in inducing severe pneumonia, including cytokine dysregulation and inflammatory leukocyte infiltration

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2008-11-01
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Fumihiko Yasui
Chieko Kai
Masahiro Kitabatake
Shingo Inoue
Misako Yoneda
Shoji Yokochi
Ryoichi Kase
Satoshi Sekiguchi
Kouichi Morita
Tsunekazu Hishima
Hidenori Suzuki
Katsuo Karamatsu
Yasuhiro Yasutomi
Hisatoshi Shida
Minoru Kidokoro
Kyosuke Mizuno
Kouji Matsushima
Michinori Kohara
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