Literature DB >> 12855705

The maturation of murine dendritic cells induced by human adenovirus is mediated by the fiber knob domain.

Valérie Molinier-Frenkel1, Armelle Prévost-Blondel, Saw-See Hong, Renée Lengagne, Sarah Boudaly, Maria K Magnusson, Pierre Boulanger, Jean-Gérard Guillet.   

Abstract

We investigated the mechanism of adenovirus serotype 5 (Ad5)-mediated maturation of bone marrow-derived murine dendritic cells (DC) using (i) Ad5 vectors with wild-type capsid (AdE1 degrees, AdGFP); (ii) Ad5 vector mutant deleted of the fiber C-terminal knob domain (AdGFPDeltaknob); and (iii) capsid components isolated from Ad5-infected cells or expressed as recombinant proteins, hexon, penton, penton base, full-length fiber, fiber knob, and fiber mutants. We found that penton capsomer (penton base linked to its fiber projection), full-length fiber protein, and its isolated knob domain were all capable of inducing DC maturation, whereas no significant DC maturation was observed for hexon or penton base alone. This capacity was severely reduced for AdGFPDeltaknob and for fiber protein deletion mutants lacking the beta-stranded region F of the knob (residues Leu-485-Thr-486). The DC maturation effect was fully retained in a recombinant fiber protein deleted of the HI loop (FiDeltaHI), a fiber (Fi) deletion mutant that failed to trimerize, suggesting that the fiber knob-mediated DC activation did not depend on the integrity of the HI loop and on the trimeric status of the fiber. Interestingly, peptide-pulsed DC that had been stimulated with Ad5 knob protein induced a potent CD8+ T cell response in vivo.

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Year:  2003        PMID: 12855705     DOI: 10.1074/jbc.M303496200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  19 in total

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2.  Epitopes expressed in different adenovirus capsid proteins induce different levels of epitope-specific immunity.

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3.  Contrasting effects of human, canine, and hybrid adenovirus vectors on the phenotypical and functional maturation of human dendritic cells: implications for clinical efficacy.

Authors:  Matthieu Perreau; Franck Mennechet; Nicolas Serratrice; Joel N Glasgow; David T Curiel; Harald Wodrich; Eric J Kremer
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Review 4.  Viral vector vaccines make memory T cells against malaria.

Authors:  Arturo Reyes-Sandoval; John T Harty; Stephen M Todryk
Journal:  Immunology       Date:  2007-06       Impact factor: 7.397

5.  Implications of the innate immune response to adenovirus and adenoviral vectors.

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6.  Immunogenicity of recombinant fiber-chimeric adenovirus serotype 35 vector-based vaccines in mice and rhesus monkeys.

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Review 7.  Dendritic cells in viral pathogenesis: protective or defective?

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8.  Adenovirus-induced maturation of dendritic cells through a PI3 kinase-mediated TNF-alpha induction pathway.

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9.  Gene transduction and cell entry pathway of fiber-modified adenovirus type 5 vectors carrying novel endocytic peptide ligands selected on human tracheal glandular cells.

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10.  Evidence that factors other than particular thyrotropin receptor T cell epitopes contribute to the development of hyperthyroidism in murine Graves' disease.

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