Correction: Corrigendum: Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state

Nature Communications 8: Article number: 14158 (2017); Published 13 February 2017; Updated 29 November 2017. In this Article, the clinical isolate MAD/GM3_10/14 of respiratory syncytial virus (RSV) is incorrectly described as an RSV A isolate. MAD/GM3_10/14 has been identified as an RSV B isolate on...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Iebe Rossey, Morgan S. A. Gilman, Stephanie C. Kabeche, Koen Sedeyn, Daniel Wrapp, Masaru Kanekiyo, Man Chen, Vicente Mas, Jan Spitaels, José A. Melero, Barney S. Graham, Bert Schepens, Jason S. McLellan, Xavier Saelens
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
Materias:
Q
Acceso en línea:https://doaj.org/article/3e09bc00b05a44aa9f8cf03469adf01d
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:3e09bc00b05a44aa9f8cf03469adf01d
record_format dspace
spelling oai:doaj.org-article:3e09bc00b05a44aa9f8cf03469adf01d2021-12-02T15:38:33ZCorrection: Corrigendum: Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state10.1038/ncomms161652041-1723https://doaj.org/article/3e09bc00b05a44aa9f8cf03469adf01d2017-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms16165https://doaj.org/toc/2041-1723Nature Communications 8: Article number: 14158 (2017); Published 13 February 2017; Updated 29 November 2017. In this Article, the clinical isolate MAD/GM3_10/14 of respiratory syncytial virus (RSV) is incorrectly described as an RSV A isolate. MAD/GM3_10/14 has been identified as an RSV B isolate onthe basis of its fusion protein sequence.Iebe RosseyMorgan S. A. GilmanStephanie C. KabecheKoen SedeynDaniel WrappMasaru KanekiyoMan ChenVicente MasJan SpitaelsJosé A. MeleroBarney S. GrahamBert SchepensJason S. McLellanXavier SaelensNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-1 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Iebe Rossey
Morgan S. A. Gilman
Stephanie C. Kabeche
Koen Sedeyn
Daniel Wrapp
Masaru Kanekiyo
Man Chen
Vicente Mas
Jan Spitaels
José A. Melero
Barney S. Graham
Bert Schepens
Jason S. McLellan
Xavier Saelens
Correction: Corrigendum: Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state
description Nature Communications 8: Article number: 14158 (2017); Published 13 February 2017; Updated 29 November 2017. In this Article, the clinical isolate MAD/GM3_10/14 of respiratory syncytial virus (RSV) is incorrectly described as an RSV A isolate. MAD/GM3_10/14 has been identified as an RSV B isolate onthe basis of its fusion protein sequence.
format article
author Iebe Rossey
Morgan S. A. Gilman
Stephanie C. Kabeche
Koen Sedeyn
Daniel Wrapp
Masaru Kanekiyo
Man Chen
Vicente Mas
Jan Spitaels
José A. Melero
Barney S. Graham
Bert Schepens
Jason S. McLellan
Xavier Saelens
author_facet Iebe Rossey
Morgan S. A. Gilman
Stephanie C. Kabeche
Koen Sedeyn
Daniel Wrapp
Masaru Kanekiyo
Man Chen
Vicente Mas
Jan Spitaels
José A. Melero
Barney S. Graham
Bert Schepens
Jason S. McLellan
Xavier Saelens
author_sort Iebe Rossey
title Correction: Corrigendum: Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state
title_short Correction: Corrigendum: Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state
title_full Correction: Corrigendum: Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state
title_fullStr Correction: Corrigendum: Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state
title_full_unstemmed Correction: Corrigendum: Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state
title_sort correction: corrigendum: potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/3e09bc00b05a44aa9f8cf03469adf01d
work_keys_str_mv AT ieberossey correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT morgansagilman correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT stephanieckabeche correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT koensedeyn correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT danielwrapp correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT masarukanekiyo correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT manchen correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT vicentemas correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT janspitaels correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT joseamelero correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT barneysgraham correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT bertschepens correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT jasonsmclellan correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
AT xaviersaelens correctioncorrigendumpotentsingledomainantibodiesthatarrestrespiratorysyncytialvirusfusionproteininitsprefusionstate
_version_ 1718386166659547136