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The spike gene is a major determinant for the SARS-CoV-2 Omicron-BA.1 phenotype

Variant of concern (VOC) Omicron-BA.1 has achieved global predominance in early 2022. Therefore, surveillance and comprehensive characterization of Omicron-BA.1 in advanced primary cell culture systems and animal models are urgently needed. Here, we characterize Omicron-BA.1 and recombinant Omicron-...

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Autores principales: Barut, G. Tuba, Halwe, Nico Joel, Taddeo, Adriano, Kelly, Jenna N., Schön, Jacob, Ebert, Nadine, Ulrich, Lorenz, Devisme, Christelle, Steiner, Silvio, Trüeb, Bettina Salome, Hoffmann, Bernd, Veiga, Inês Berenguer, Leborgne, Nathan Georges François, Moreira, Etori Aguiar, Breithaupt, Angele, Wylezich, Claudia, Höper, Dirk, Wernike, Kerstin, Godel, Aurélie, Thomann, Lisa, Flück, Vera, Stalder, Hanspeter, Brügger, Melanie, Esteves, Blandina I. Oliveira, Zumkehr, Beatrice, Beilleau, Guillaume, Kratzel, Annika, Schmied, Kimberly, Ochsenbein, Sarah, Lang, Reto M., Wider, Manon, Machahua, Carlos, Dorn, Patrick, Marti, Thomas M., Funke-Chambour, Manuela, Rauch, Andri, Widera, Marek, Ciesek, Sandra, Dijkman, Ronald, Hoffmann, Donata, Alves, Marco P., Benarafa, Charaf, Beer, Martin, Thiel, Volker
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9543931/
https://www.ncbi.nlm.nih.gov/pubmed/36207334
http://dx.doi.org/10.1038/s41467-022-33632-y
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author Barut, G. Tuba
Halwe, Nico Joel
Taddeo, Adriano
Kelly, Jenna N.
Schön, Jacob
Ebert, Nadine
Ulrich, Lorenz
Devisme, Christelle
Steiner, Silvio
Trüeb, Bettina Salome
Hoffmann, Bernd
Veiga, Inês Berenguer
Leborgne, Nathan Georges François
Moreira, Etori Aguiar
Breithaupt, Angele
Wylezich, Claudia
Höper, Dirk
Wernike, Kerstin
Godel, Aurélie
Thomann, Lisa
Flück, Vera
Stalder, Hanspeter
Brügger, Melanie
Esteves, Blandina I. Oliveira
Zumkehr, Beatrice
Beilleau, Guillaume
Kratzel, Annika
Schmied, Kimberly
Ochsenbein, Sarah
Lang, Reto M.
Wider, Manon
Machahua, Carlos
Dorn, Patrick
Marti, Thomas M.
Funke-Chambour, Manuela
Rauch, Andri
Widera, Marek
Ciesek, Sandra
Dijkman, Ronald
Hoffmann, Donata
Alves, Marco P.
Benarafa, Charaf
Beer, Martin
Thiel, Volker
author_facet Barut, G. Tuba
Halwe, Nico Joel
Taddeo, Adriano
Kelly, Jenna N.
Schön, Jacob
Ebert, Nadine
Ulrich, Lorenz
Devisme, Christelle
Steiner, Silvio
Trüeb, Bettina Salome
Hoffmann, Bernd
Veiga, Inês Berenguer
Leborgne, Nathan Georges François
Moreira, Etori Aguiar
Breithaupt, Angele
Wylezich, Claudia
Höper, Dirk
Wernike, Kerstin
Godel, Aurélie
Thomann, Lisa
Flück, Vera
Stalder, Hanspeter
Brügger, Melanie
Esteves, Blandina I. Oliveira
Zumkehr, Beatrice
Beilleau, Guillaume
Kratzel, Annika
Schmied, Kimberly
Ochsenbein, Sarah
Lang, Reto M.
Wider, Manon
Machahua, Carlos
Dorn, Patrick
Marti, Thomas M.
Funke-Chambour, Manuela
Rauch, Andri
Widera, Marek
Ciesek, Sandra
Dijkman, Ronald
Hoffmann, Donata
Alves, Marco P.
Benarafa, Charaf
Beer, Martin
Thiel, Volker
author_sort Barut, G. Tuba
collection PubMed
description Variant of concern (VOC) Omicron-BA.1 has achieved global predominance in early 2022. Therefore, surveillance and comprehensive characterization of Omicron-BA.1 in advanced primary cell culture systems and animal models are urgently needed. Here, we characterize Omicron-BA.1 and recombinant Omicron-BA.1 spike gene mutants in comparison with VOC Delta in well-differentiated primary human nasal and bronchial epithelial cells in vitro, followed by in vivo fitness characterization in hamsters, ferrets and hACE2-expressing mice, and immunized hACE2-mice. We demonstrate a spike-mediated enhancement of early replication of Omicron-BA.1 in nasal epithelial cultures, but limited replication in bronchial epithelial cultures. In hamsters, Delta shows dominance over Omicron-BA.1, and in ferrets Omicron-BA.1 infection is abortive. In hACE2-knock-in mice, Delta and a Delta spike clone also show dominance over Omicron-BA.1 and an Omicron-BA.1 spike clone, respectively. Interestingly, in naïve K18-hACE2 mice, we observe Delta spike-mediated increased replication and pathogenicity and Omicron-BA.1 spike-mediated reduced replication and pathogenicity, suggesting that the spike gene is a major determinant of replication and pathogenicity. Finally, the Omicron-BA.1 spike clone is less well-controlled by mRNA-vaccination in K18-hACE2-mice and becomes more competitive compared to the progenitor and Delta spike clones, suggesting that spike gene-mediated immune evasion is another important factor that led to Omicron-BA.1 dominance.
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spelling pubmed-95439312022-10-09 The spike gene is a major determinant for the SARS-CoV-2 Omicron-BA.1 phenotype Barut, G. Tuba Halwe, Nico Joel Taddeo, Adriano Kelly, Jenna N. Schön, Jacob Ebert, Nadine Ulrich, Lorenz Devisme, Christelle Steiner, Silvio Trüeb, Bettina Salome Hoffmann, Bernd Veiga, Inês Berenguer Leborgne, Nathan Georges François Moreira, Etori Aguiar Breithaupt, Angele Wylezich, Claudia Höper, Dirk Wernike, Kerstin Godel, Aurélie Thomann, Lisa Flück, Vera Stalder, Hanspeter Brügger, Melanie Esteves, Blandina I. Oliveira Zumkehr, Beatrice Beilleau, Guillaume Kratzel, Annika Schmied, Kimberly Ochsenbein, Sarah Lang, Reto M. Wider, Manon Machahua, Carlos Dorn, Patrick Marti, Thomas M. Funke-Chambour, Manuela Rauch, Andri Widera, Marek Ciesek, Sandra Dijkman, Ronald Hoffmann, Donata Alves, Marco P. Benarafa, Charaf Beer, Martin Thiel, Volker Nat Commun Article Variant of concern (VOC) Omicron-BA.1 has achieved global predominance in early 2022. Therefore, surveillance and comprehensive characterization of Omicron-BA.1 in advanced primary cell culture systems and animal models are urgently needed. Here, we characterize Omicron-BA.1 and recombinant Omicron-BA.1 spike gene mutants in comparison with VOC Delta in well-differentiated primary human nasal and bronchial epithelial cells in vitro, followed by in vivo fitness characterization in hamsters, ferrets and hACE2-expressing mice, and immunized hACE2-mice. We demonstrate a spike-mediated enhancement of early replication of Omicron-BA.1 in nasal epithelial cultures, but limited replication in bronchial epithelial cultures. In hamsters, Delta shows dominance over Omicron-BA.1, and in ferrets Omicron-BA.1 infection is abortive. In hACE2-knock-in mice, Delta and a Delta spike clone also show dominance over Omicron-BA.1 and an Omicron-BA.1 spike clone, respectively. Interestingly, in naïve K18-hACE2 mice, we observe Delta spike-mediated increased replication and pathogenicity and Omicron-BA.1 spike-mediated reduced replication and pathogenicity, suggesting that the spike gene is a major determinant of replication and pathogenicity. Finally, the Omicron-BA.1 spike clone is less well-controlled by mRNA-vaccination in K18-hACE2-mice and becomes more competitive compared to the progenitor and Delta spike clones, suggesting that spike gene-mediated immune evasion is another important factor that led to Omicron-BA.1 dominance. Nature Publishing Group UK 2022-10-07 /pmc/articles/PMC9543931/ /pubmed/36207334 http://dx.doi.org/10.1038/s41467-022-33632-y Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Barut, G. Tuba
Halwe, Nico Joel
Taddeo, Adriano
Kelly, Jenna N.
Schön, Jacob
Ebert, Nadine
Ulrich, Lorenz
Devisme, Christelle
Steiner, Silvio
Trüeb, Bettina Salome
Hoffmann, Bernd
Veiga, Inês Berenguer
Leborgne, Nathan Georges François
Moreira, Etori Aguiar
Breithaupt, Angele
Wylezich, Claudia
Höper, Dirk
Wernike, Kerstin
Godel, Aurélie
Thomann, Lisa
Flück, Vera
Stalder, Hanspeter
Brügger, Melanie
Esteves, Blandina I. Oliveira
Zumkehr, Beatrice
Beilleau, Guillaume
Kratzel, Annika
Schmied, Kimberly
Ochsenbein, Sarah
Lang, Reto M.
Wider, Manon
Machahua, Carlos
Dorn, Patrick
Marti, Thomas M.
Funke-Chambour, Manuela
Rauch, Andri
Widera, Marek
Ciesek, Sandra
Dijkman, Ronald
Hoffmann, Donata
Alves, Marco P.
Benarafa, Charaf
Beer, Martin
Thiel, Volker
The spike gene is a major determinant for the SARS-CoV-2 Omicron-BA.1 phenotype
title The spike gene is a major determinant for the SARS-CoV-2 Omicron-BA.1 phenotype
title_full The spike gene is a major determinant for the SARS-CoV-2 Omicron-BA.1 phenotype
title_fullStr The spike gene is a major determinant for the SARS-CoV-2 Omicron-BA.1 phenotype
title_full_unstemmed The spike gene is a major determinant for the SARS-CoV-2 Omicron-BA.1 phenotype
title_short The spike gene is a major determinant for the SARS-CoV-2 Omicron-BA.1 phenotype
title_sort spike gene is a major determinant for the sars-cov-2 omicron-ba.1 phenotype
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9543931/
https://www.ncbi.nlm.nih.gov/pubmed/36207334
http://dx.doi.org/10.1038/s41467-022-33632-y
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