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About:
Identification of a Novel Human Rhinovirus C Type by Antibody Capture VIDISCA-454
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An Entity of Type :
schema:ScholarlyArticle
, within Data Space :
covidontheweb.inria.fr
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document(s)
Type:
Academic Article
research paper
schema:ScholarlyArticle
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type
Academic Article
research paper
schema:ScholarlyArticle
isDefinedBy
Covid-on-the-Web dataset
title
Identification of a Novel Human Rhinovirus C Type by Antibody Capture VIDISCA-454
Creator
Kellam, Paul
Canuti, Marta
Deijs, Martin
Goossens, Herman
Ieven, Margareta
Cotten, Matthew
Jebbink, Maarten
Oude Munnink, Bas
Loens, Katherine
Farsani, Jazaeri
Mohammad, Seyed
Van Der Hoek, Lia
Verhoeven, Joost
source
Medline; PMC
abstract
Causative agents for more than 30 percent of respiratory infections remain unidentified, suggesting that unknown respiratory pathogens might be involved. In this study, antibody capture VIDISCA-454 (virus discovery cDNA-AFLP combined with Roche 454 high-throughput sequencing) resulted in the discovery of a novel type of rhinovirus C (RV-C). The virus has an RNA genome of at least 7054 nt and carries the characteristics of rhinovirus C species. The gene encoding viral protein 1, which is used for typing, has only 81% nucleotide sequence identity with the closest known RV-C type, and, therefore, the virus represents the first member of a novel type, named RV-C54.
has issue date
2015-01-19
(
xsd:dateTime
)
bibo:doi
10.3390/v7010239
bibo:pmid
25606972
has license
cc-by
sha1sum (hex)
99704a709275628b95cb9d914c7e925701d67bef
schema:url
https://doi.org/10.3390/v7010239
resource representing a document's title
Identification of a Novel Human Rhinovirus C Type by Antibody Capture VIDISCA-454
has PubMed Central identifier
PMC4306836
has PubMed identifier
25606972
schema:publication
Viruses
resource representing a document's body
covid:99704a709275628b95cb9d914c7e925701d67bef#body_text
is
schema:about
of
named entity 'INVOLVED'
named entity 'RNA GENOME'
named entity 'CAUSATIVE AGENTS'
named entity 'involved'
named entity 'high-throughput sequencing'
named entity 'rhinovirus'
named entity 'viral protein'
named entity 'high-throughput sequencing'
named entity 'virus'
named entity 'RV-C'
named entity 'virus'
named entity 'RNA genome'
named entity 'antibody'
named entity 'virally'
named entity 'PCR'
named entity 'Agencourt'
named entity 'BLASTN'
named entity 'recombinant virus'
named entity 'virus'
named entity 'sequence space'
named entity 'incubation'
named entity 'antibodies'
named entity 'immune response'
named entity 'convalescent serum'
named entity 'sequence space'
named entity 'South Africa'
named entity 'Picornaviridae'
named entity 'New England Biolabs'
named entity 'respiratory syncytial virus'
named entity 'primers'
named entity 'Roche'
named entity 'viruses'
named entity 'upper airway'
named entity 'infection'
named entity 'National Center for Biotechnology Information'
named entity 'polymorphism'
named entity 'consensus sequences'
named entity 'Beckman Coulter'
named entity 'double-stranded DNA'
named entity 'acute phase'
named entity 'VP1'
named entity 'RV-C'
named entity 'restriction enzyme'
named entity 'sinus'
named entity 'RV-C'
named entity 'virus'
named entity 'RV-C'
named entity 'gene'
named entity 'RV-B'
named entity 'database'
named entity '5' UTR'
named entity 'Barcelona'
named entity 'antibody'
named entity 'genome sequence'
named entity 'virus'
named entity 'nucleic acids'
named entity 'primers'
named entity 'diagnostic test'
named entity 'number of reads'
named entity 'upper respiratory tract infections'
named entity 'Dynabeads'
named entity 'genome sequence'
named entity 'rRNA'
named entity 'recombination'
named entity 'organ culture'
named entity 'immunogenic'
named entity 'protein'
named entity 'GS FLX'
named entity 'State University of New York'
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