Functional comparison of MERS-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 5
MERS-CoV is enzootic in dromedary camels, can spread to humans but undergoes limited onward transmission. Here, Schroeder et al. compare clinical isolates of MERS-CoV in vitro and show that the predominantly circulating recombinant lineage 5 possess a fitness advantage over parental lineage 3 and 4...
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2021
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oai:doaj.org-article:fd5899e1e8ed4fc68c3c88e1bf84f1a62021-12-02T14:54:28ZFunctional comparison of MERS-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 510.1038/s41467-021-25519-12041-1723https://doaj.org/article/fd5899e1e8ed4fc68c3c88e1bf84f1a62021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25519-1https://doaj.org/toc/2041-1723MERS-CoV is enzootic in dromedary camels, can spread to humans but undergoes limited onward transmission. Here, Schroeder et al. compare clinical isolates of MERS-CoV in vitro and show that the predominantly circulating recombinant lineage 5 possess a fitness advantage over parental lineage 3 and 4 due to reduced activation of innate immune signaling.Simon SchroederChristin MacheHannah Kleine-WeberVictor M. CormanDoreen MuthAnja RichterDiana FatykhovaZiad A. MemishMegan L. StaniferSteeve BoulantMitra GultomRonald DijkmanStephan EggelingAndreas HockeStefan HippenstielVolker ThielStefan PöhlmannThorsten WolffMarcel A. MüllerChristian DrostenNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021) |
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Science Q Simon Schroeder Christin Mache Hannah Kleine-Weber Victor M. Corman Doreen Muth Anja Richter Diana Fatykhova Ziad A. Memish Megan L. Stanifer Steeve Boulant Mitra Gultom Ronald Dijkman Stephan Eggeling Andreas Hocke Stefan Hippenstiel Volker Thiel Stefan Pöhlmann Thorsten Wolff Marcel A. Müller Christian Drosten Functional comparison of MERS-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 5 |
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MERS-CoV is enzootic in dromedary camels, can spread to humans but undergoes limited onward transmission. Here, Schroeder et al. compare clinical isolates of MERS-CoV in vitro and show that the predominantly circulating recombinant lineage 5 possess a fitness advantage over parental lineage 3 and 4 due to reduced activation of innate immune signaling. |
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article |
author |
Simon Schroeder Christin Mache Hannah Kleine-Weber Victor M. Corman Doreen Muth Anja Richter Diana Fatykhova Ziad A. Memish Megan L. Stanifer Steeve Boulant Mitra Gultom Ronald Dijkman Stephan Eggeling Andreas Hocke Stefan Hippenstiel Volker Thiel Stefan Pöhlmann Thorsten Wolff Marcel A. Müller Christian Drosten |
author_facet |
Simon Schroeder Christin Mache Hannah Kleine-Weber Victor M. Corman Doreen Muth Anja Richter Diana Fatykhova Ziad A. Memish Megan L. Stanifer Steeve Boulant Mitra Gultom Ronald Dijkman Stephan Eggeling Andreas Hocke Stefan Hippenstiel Volker Thiel Stefan Pöhlmann Thorsten Wolff Marcel A. Müller Christian Drosten |
author_sort |
Simon Schroeder |
title |
Functional comparison of MERS-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 5 |
title_short |
Functional comparison of MERS-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 5 |
title_full |
Functional comparison of MERS-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 5 |
title_fullStr |
Functional comparison of MERS-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 5 |
title_full_unstemmed |
Functional comparison of MERS-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 5 |
title_sort |
functional comparison of mers-coronavirus lineages reveals increased replicative fitness of the recombinant lineage 5 |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/fd5899e1e8ed4fc68c3c88e1bf84f1a6 |
work_keys_str_mv |
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