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Non-human primate orthologues of TMPRSS2 cleave and activate the influenza virus hemagglutinin

The cellular serine protease TMPRSS2, a member of the type II transmembrane serine protease (TTSP) family, cleaves and activates the hemagglutinin of influenza A viruses (FLUAV) in cell culture and is essential for spread of diverse FLUAV in mice. Non-human primates (NHP), in particular rhesus and c...

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Autores principales: Zmora, Pawel, Molau-Blazejewska, Paulina, Bertram, Stephanie, Walendy-Gnirß, Kerstin, Nehlmeier, Inga, Hartleib, Anika, Moldenhauer, Anna-Sophie, Konzok, Sebastian, Dehmel, Susann, Sewald, Katherina, Brinkmann, Constantin, Curths, Christoph, Knauf, Sascha, Gruber, Jens, Mätz-Rensing, Kerstin, Dahlmann, Franziska, Braun, Armin, Pöhlmann, Stefan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5426610/
https://www.ncbi.nlm.nih.gov/pubmed/28493964
http://dx.doi.org/10.1371/journal.pone.0176597
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author Zmora, Pawel
Molau-Blazejewska, Paulina
Bertram, Stephanie
Walendy-Gnirß, Kerstin
Nehlmeier, Inga
Hartleib, Anika
Moldenhauer, Anna-Sophie
Konzok, Sebastian
Dehmel, Susann
Sewald, Katherina
Brinkmann, Constantin
Curths, Christoph
Knauf, Sascha
Gruber, Jens
Mätz-Rensing, Kerstin
Dahlmann, Franziska
Braun, Armin
Pöhlmann, Stefan
author_facet Zmora, Pawel
Molau-Blazejewska, Paulina
Bertram, Stephanie
Walendy-Gnirß, Kerstin
Nehlmeier, Inga
Hartleib, Anika
Moldenhauer, Anna-Sophie
Konzok, Sebastian
Dehmel, Susann
Sewald, Katherina
Brinkmann, Constantin
Curths, Christoph
Knauf, Sascha
Gruber, Jens
Mätz-Rensing, Kerstin
Dahlmann, Franziska
Braun, Armin
Pöhlmann, Stefan
author_sort Zmora, Pawel
collection PubMed
description The cellular serine protease TMPRSS2, a member of the type II transmembrane serine protease (TTSP) family, cleaves and activates the hemagglutinin of influenza A viruses (FLUAV) in cell culture and is essential for spread of diverse FLUAV in mice. Non-human primates (NHP), in particular rhesus and cynomolgus macaques, serve as animal models for influenza and experimental FLUAV infection of common marmosets has recently also been reported. However, it is currently unknown whether the NHP orthologues of human TMPRSS2 cleave and activate FLUAV hemagglutinin and contribute to viral spread in respiratory tissue. Here, we cloned and functionally analyzed the macaque and marmoset orthologues of human TMPRSS2. In addition, we analyzed the macaque orthologues of human TMPRSS4 and HAT, which also belong to the TTSP family. We found that all NHP orthologues of human TMPRSS2, TMPRSS4 and HAT cleave and activate HA upon directed expression and provide evidence that endogenous TMPRSS2 is expressed in the respiratory epithelium of rhesus macaques. Finally, we demonstrate that a serine protease inhibitor active against TMPRSS2 suppresses FLUAV spread in precision-cut lung slices of human, macaque and marmoset origin. These results indicate that FLUAV depends on serine protease activity for spread in diverse NHP and in humans. Moreover, our findings suggest that macaques and marmosets may serve as models to study FLUAV activation by TMPRSS2 in human patients.
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spelling pubmed-54266102017-05-25 Non-human primate orthologues of TMPRSS2 cleave and activate the influenza virus hemagglutinin Zmora, Pawel Molau-Blazejewska, Paulina Bertram, Stephanie Walendy-Gnirß, Kerstin Nehlmeier, Inga Hartleib, Anika Moldenhauer, Anna-Sophie Konzok, Sebastian Dehmel, Susann Sewald, Katherina Brinkmann, Constantin Curths, Christoph Knauf, Sascha Gruber, Jens Mätz-Rensing, Kerstin Dahlmann, Franziska Braun, Armin Pöhlmann, Stefan PLoS One Research Article The cellular serine protease TMPRSS2, a member of the type II transmembrane serine protease (TTSP) family, cleaves and activates the hemagglutinin of influenza A viruses (FLUAV) in cell culture and is essential for spread of diverse FLUAV in mice. Non-human primates (NHP), in particular rhesus and cynomolgus macaques, serve as animal models for influenza and experimental FLUAV infection of common marmosets has recently also been reported. However, it is currently unknown whether the NHP orthologues of human TMPRSS2 cleave and activate FLUAV hemagglutinin and contribute to viral spread in respiratory tissue. Here, we cloned and functionally analyzed the macaque and marmoset orthologues of human TMPRSS2. In addition, we analyzed the macaque orthologues of human TMPRSS4 and HAT, which also belong to the TTSP family. We found that all NHP orthologues of human TMPRSS2, TMPRSS4 and HAT cleave and activate HA upon directed expression and provide evidence that endogenous TMPRSS2 is expressed in the respiratory epithelium of rhesus macaques. Finally, we demonstrate that a serine protease inhibitor active against TMPRSS2 suppresses FLUAV spread in precision-cut lung slices of human, macaque and marmoset origin. These results indicate that FLUAV depends on serine protease activity for spread in diverse NHP and in humans. Moreover, our findings suggest that macaques and marmosets may serve as models to study FLUAV activation by TMPRSS2 in human patients. Public Library of Science 2017-05-11 /pmc/articles/PMC5426610/ /pubmed/28493964 http://dx.doi.org/10.1371/journal.pone.0176597 Text en © 2017 Zmora 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Zmora, Pawel
Molau-Blazejewska, Paulina
Bertram, Stephanie
Walendy-Gnirß, Kerstin
Nehlmeier, Inga
Hartleib, Anika
Moldenhauer, Anna-Sophie
Konzok, Sebastian
Dehmel, Susann
Sewald, Katherina
Brinkmann, Constantin
Curths, Christoph
Knauf, Sascha
Gruber, Jens
Mätz-Rensing, Kerstin
Dahlmann, Franziska
Braun, Armin
Pöhlmann, Stefan
Non-human primate orthologues of TMPRSS2 cleave and activate the influenza virus hemagglutinin
title Non-human primate orthologues of TMPRSS2 cleave and activate the influenza virus hemagglutinin
title_full Non-human primate orthologues of TMPRSS2 cleave and activate the influenza virus hemagglutinin
title_fullStr Non-human primate orthologues of TMPRSS2 cleave and activate the influenza virus hemagglutinin
title_full_unstemmed Non-human primate orthologues of TMPRSS2 cleave and activate the influenza virus hemagglutinin
title_short Non-human primate orthologues of TMPRSS2 cleave and activate the influenza virus hemagglutinin
title_sort non-human primate orthologues of tmprss2 cleave and activate the influenza virus hemagglutinin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5426610/
https://www.ncbi.nlm.nih.gov/pubmed/28493964
http://dx.doi.org/10.1371/journal.pone.0176597
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