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Ningguo Feng, Jeffrey A. Lawton, Joana Gilbert, Nelly Kuklin, Phuoc Vo, B.V. Venkataram Prasad, Harry B. Greenberg
J Clin Invest. 2002;
109(9):1203
doi:10.1172/JCI14397
Abstract |
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R
otaviruses are the leading cause of severe diarrheal disease in young children. Intestinal mucosal IgA responses play a critical role in protective immunity against rotavirus reinfection. Rotaviruses consist of three concentric capsid layers surrounding a genome of 11 segments of double-stranded RNA. The outer layer proteins, VP4 and VP7, which are responsible for viral attachment and entry, are targets for protective neutralizing antibodies. However, IgA mAb’s directed against the intermediate capsid protein VP6, which do not neutralize the virus, have also been shown to protect mice from rotavirus infection and clear chronic infection in SCID mice. We investigated whether the anti-VP6 IgA (7D9) mAb could inhibit rotavirus replication inside epithelial cells and found that 7D9 acted at an early stage of infection to neutralize rotavirus following antibody lipofection. Using electron cryomicroscopy, we determined the three-dimensional structure of the virus-antibody complex. The attachment of 7D9 IgA to VP6 introduces a conformational change in the VP6 trimer, rendering the particle transcriptionally incompetent and preventing the elongation of initiated transcripts. Based on these observations, we suggest that anti-VP6 IgA antibodies confers protection in vivo by inhibiting viral transcription at the start of the intracellular phase of the viral replication cycle.
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(10)
| Title and authors |
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N. C. Donker, M. Foley, D. C. Tamvakis, R. Bishop, C. D. Kirkwood
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2011 |
Molecular interactions in rotavirus assembly and uncoating seen by high-resolution cryo-EM.
James Z Chen, Ethan C Settembre, Scott T Aoki, Xing Zhang, A Richard Bellamy, Philip R Dormitzer, Stephen C Harrison, Nikolaus Grigorieff
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Proc. Natl. Acad. Sci. U.S.A.
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2009 |
Engineered lactobody-producing lactobacilli: a novel form of therapy against rotavirus infection
Harold Marcotte, Neha Pant, Lennart Hammarström
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Future Virology
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2008 |
Second European Rotavirus Biology Meeting
Ulrich Desselberger
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Future Virology
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2007 |
Amino acid domains 280–297 of VP6 and 531–554 of VP4 are implicated in heat shock cognate protein hsc70-mediated rotavirus infection
D. F. Gualtero, F. Guzmán, O. Acosta, C. A. Guerrero
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Arch Virol
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2007 |
IFN-γ Is the Only Anti-rotavirus Cytokine Found afterIn VitroStimulation of Memory CD4+T Cells from Mice Immunized with a Chimeric VP6 Protein
Monica M. McNeal, Susan C. Stone, Mitali Basu, John D. Clements, Anthony H.-C. Choi, Richard L. Ward
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Viral Immunology
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2007 |
Distribution and phenotype of murine rotavirus-specific B cells induced by intranasal immunization with 2/6 virus-like particles
Agathe Ogier, Manuel A. Franco, Annie Charpilienne, Jean Cohen, Pierre Pothier, Evelyne Kohli
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Eur. J. Immunol.
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2005 |
Transgenic Tobacco Expressing a Modified VP6 Gene Protects Mice Against Rotavirus Infection
Jiang-Li DONG, Bo ZHOU, Gang SHENG, Tao WANG
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Journal of Integrative Plant Biology
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2005 |
Accumulation of rotavirus VP6 protein in chloroplasts of transplastomic tobacco is limited by protein stability
Ian Birch-Machin, Christine A. Newell, Julian M. Hibberd, John C. Gray
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Plant Biotechnology Journal
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2004 |
Mucosal immunity: Some historical perspective on host-pathogen interactions and implications for mucosal vaccines*
Pearay L Ogra
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Immunol Cell Biol
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2003 |
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