Cargando…

Protein Crystals in Adenovirus Type 5-Infected Cells: Requirements for Intranuclear Crystallogenesis, Structural and Functional Analysis

Intranuclear crystalline inclusions have been observed in the nucleus of epithelial cells infected with Adenovirus serotype 5 (Ad5) at late steps of the virus life cycle. Using immuno-electron microscopy and confocal microscopy of cells infected with various Ad5 recombinants modified in their penton...

Descripción completa

Detalles Bibliográficos
Autores principales: Franqueville, Laure, Henning, Petra, Magnusson, Maria, Vigne, Emmanuelle, Schoehn, Guy, Blair-Zajdel, Maria E., Habib, Nagy, Lindholm, Leif, Blair, G. Eric, Hong, Saw See, Boulanger, Pierre
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2488365/
https://www.ncbi.nlm.nih.gov/pubmed/18682854
http://dx.doi.org/10.1371/journal.pone.0002894
_version_ 1782158125107773440
author Franqueville, Laure
Henning, Petra
Magnusson, Maria
Vigne, Emmanuelle
Schoehn, Guy
Blair-Zajdel, Maria E.
Habib, Nagy
Lindholm, Leif
Blair, G. Eric
Hong, Saw See
Boulanger, Pierre
author_facet Franqueville, Laure
Henning, Petra
Magnusson, Maria
Vigne, Emmanuelle
Schoehn, Guy
Blair-Zajdel, Maria E.
Habib, Nagy
Lindholm, Leif
Blair, G. Eric
Hong, Saw See
Boulanger, Pierre
author_sort Franqueville, Laure
collection PubMed
description Intranuclear crystalline inclusions have been observed in the nucleus of epithelial cells infected with Adenovirus serotype 5 (Ad5) at late steps of the virus life cycle. Using immuno-electron microscopy and confocal microscopy of cells infected with various Ad5 recombinants modified in their penton base or fiber domains, we found that these inclusions represented crystals of penton capsomers, the heteromeric capsid protein formed of penton base and fiber subunits. The occurrence of protein crystals within the nucleus of infected cells required the integrity of the fiber knob and part of the shaft domain. In the knob domain, the region overlapping residues 489–492 in the FG loop was found to be essential for crystal formation. In the shaft, a large deletion of repeats 4 to 16 had no detrimental effect on crystal inclusions, whereas deletion of repeats 8 to 21 abolished crystal formation without altering the level of fiber protein expression. This suggested a crucial role of the five penultimate repeats in the crystallisation process. Chimeric pentons made of Ad5 penton base and fiber domains from different serotypes were analyzed with respect to crystal formation. No crystal was found when fiber consisted of shaft (S) from Ad5 and knob (K) from Ad3 (heterotypic S5-K3 fiber), but occurred with homotypic S3K3 fiber. However, less regular crystals were observed with homotypic S35-K35 fiber. TB5, a monoclonal antibody directed against the Ad5 fiber knob was found by immunofluorescence microscopy to react with high efficiency with the intranuclear protein crystals in situ. Data obtained with Ad fiber mutants indicated that the absence of crystalline inclusions correlated with a lower infectivity and/or lower yields of virus progeny, suggesting that the protein crystals might be involved in virion assembly. Thus, we propose that TB5 staining of Ad-infected 293 cells can be used as a prognostic assay for the viability and productivity of fiber-modified Ad5 vectors.
format Text
id pubmed-2488365
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-24883652008-08-06 Protein Crystals in Adenovirus Type 5-Infected Cells: Requirements for Intranuclear Crystallogenesis, Structural and Functional Analysis Franqueville, Laure Henning, Petra Magnusson, Maria Vigne, Emmanuelle Schoehn, Guy Blair-Zajdel, Maria E. Habib, Nagy Lindholm, Leif Blair, G. Eric Hong, Saw See Boulanger, Pierre PLoS One Research Article Intranuclear crystalline inclusions have been observed in the nucleus of epithelial cells infected with Adenovirus serotype 5 (Ad5) at late steps of the virus life cycle. Using immuno-electron microscopy and confocal microscopy of cells infected with various Ad5 recombinants modified in their penton base or fiber domains, we found that these inclusions represented crystals of penton capsomers, the heteromeric capsid protein formed of penton base and fiber subunits. The occurrence of protein crystals within the nucleus of infected cells required the integrity of the fiber knob and part of the shaft domain. In the knob domain, the region overlapping residues 489–492 in the FG loop was found to be essential for crystal formation. In the shaft, a large deletion of repeats 4 to 16 had no detrimental effect on crystal inclusions, whereas deletion of repeats 8 to 21 abolished crystal formation without altering the level of fiber protein expression. This suggested a crucial role of the five penultimate repeats in the crystallisation process. Chimeric pentons made of Ad5 penton base and fiber domains from different serotypes were analyzed with respect to crystal formation. No crystal was found when fiber consisted of shaft (S) from Ad5 and knob (K) from Ad3 (heterotypic S5-K3 fiber), but occurred with homotypic S3K3 fiber. However, less regular crystals were observed with homotypic S35-K35 fiber. TB5, a monoclonal antibody directed against the Ad5 fiber knob was found by immunofluorescence microscopy to react with high efficiency with the intranuclear protein crystals in situ. Data obtained with Ad fiber mutants indicated that the absence of crystalline inclusions correlated with a lower infectivity and/or lower yields of virus progeny, suggesting that the protein crystals might be involved in virion assembly. Thus, we propose that TB5 staining of Ad-infected 293 cells can be used as a prognostic assay for the viability and productivity of fiber-modified Ad5 vectors. Public Library of Science 2008-08-06 /pmc/articles/PMC2488365/ /pubmed/18682854 http://dx.doi.org/10.1371/journal.pone.0002894 Text en Franqueville et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Franqueville, Laure
Henning, Petra
Magnusson, Maria
Vigne, Emmanuelle
Schoehn, Guy
Blair-Zajdel, Maria E.
Habib, Nagy
Lindholm, Leif
Blair, G. Eric
Hong, Saw See
Boulanger, Pierre
Protein Crystals in Adenovirus Type 5-Infected Cells: Requirements for Intranuclear Crystallogenesis, Structural and Functional Analysis
title Protein Crystals in Adenovirus Type 5-Infected Cells: Requirements for Intranuclear Crystallogenesis, Structural and Functional Analysis
title_full Protein Crystals in Adenovirus Type 5-Infected Cells: Requirements for Intranuclear Crystallogenesis, Structural and Functional Analysis
title_fullStr Protein Crystals in Adenovirus Type 5-Infected Cells: Requirements for Intranuclear Crystallogenesis, Structural and Functional Analysis
title_full_unstemmed Protein Crystals in Adenovirus Type 5-Infected Cells: Requirements for Intranuclear Crystallogenesis, Structural and Functional Analysis
title_short Protein Crystals in Adenovirus Type 5-Infected Cells: Requirements for Intranuclear Crystallogenesis, Structural and Functional Analysis
title_sort protein crystals in adenovirus type 5-infected cells: requirements for intranuclear crystallogenesis, structural and functional analysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2488365/
https://www.ncbi.nlm.nih.gov/pubmed/18682854
http://dx.doi.org/10.1371/journal.pone.0002894
work_keys_str_mv AT franquevillelaure proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT henningpetra proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT magnussonmaria proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT vigneemmanuelle proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT schoehnguy proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT blairzajdelmariae proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT habibnagy proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT lindholmleif proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT blairgeric proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT hongsawsee proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis
AT boulangerpierre proteincrystalsinadenovirustype5infectedcellsrequirementsforintranuclearcrystallogenesisstructuralandfunctionalanalysis