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TMPRSS2 Is Essential for SARS-CoV-2 Beta and Omicron Infection
by
Metzdorf, Kristin
, Greweling-Pils, Marina C.
, Čičin-Šain, Luka
, Lüddecke, Tatjana
, Kempf, Amy M.
, Hoffmann, Markus
, Miller, Felicitas
, Jacobsen, Henning
, Bruder, Dunja
, Ciesek, Sandra
, Melcher, Lars
, Widera, Marek
, Nehlmeier, Inga
, Pöhlmann, Stefan
in
Analysis
/ Animals
/ Antiviral agents
/ Antiviral Agents - pharmacology
/ Antiviral Agents - therapeutic use
/ Antiviral drugs
/ Beta variant (B.1.351)
/ Body weight loss
/ Cathepsin L
/ Cell culture
/ Coronaviruses
/ COVID-19
/ COVID-19 infection
/ Cysteine proteinase
/ Dosage and administration
/ Experiments
/ Gene expression
/ Glycoproteins
/ Humans
/ Infections
/ Lungs
/ Mice
/ Mice, Inbred C57BL
/ mouse
/ Mutation
/ nose
/ Omicron variant (B.1.1.529)
/ pandemic
/ Pandemics
/ Plasmids
/ Proteins
/ Public health
/ Respiratory tract
/ SARS-CoV-2
/ Serine Endopeptidases - genetics
/ Serine proteinase
/ serine proteinases
/ Severe acute respiratory syndrome coronavirus 2
/ therapeutics
/ transmembrane serine protease TMPRSS2
/ Viruses
/ weight loss
2023
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TMPRSS2 Is Essential for SARS-CoV-2 Beta and Omicron Infection
by
Metzdorf, Kristin
, Greweling-Pils, Marina C.
, Čičin-Šain, Luka
, Lüddecke, Tatjana
, Kempf, Amy M.
, Hoffmann, Markus
, Miller, Felicitas
, Jacobsen, Henning
, Bruder, Dunja
, Ciesek, Sandra
, Melcher, Lars
, Widera, Marek
, Nehlmeier, Inga
, Pöhlmann, Stefan
in
Analysis
/ Animals
/ Antiviral agents
/ Antiviral Agents - pharmacology
/ Antiviral Agents - therapeutic use
/ Antiviral drugs
/ Beta variant (B.1.351)
/ Body weight loss
/ Cathepsin L
/ Cell culture
/ Coronaviruses
/ COVID-19
/ COVID-19 infection
/ Cysteine proteinase
/ Dosage and administration
/ Experiments
/ Gene expression
/ Glycoproteins
/ Humans
/ Infections
/ Lungs
/ Mice
/ Mice, Inbred C57BL
/ mouse
/ Mutation
/ nose
/ Omicron variant (B.1.1.529)
/ pandemic
/ Pandemics
/ Plasmids
/ Proteins
/ Public health
/ Respiratory tract
/ SARS-CoV-2
/ Serine Endopeptidases - genetics
/ Serine proteinase
/ serine proteinases
/ Severe acute respiratory syndrome coronavirus 2
/ therapeutics
/ transmembrane serine protease TMPRSS2
/ Viruses
/ weight loss
2023
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TMPRSS2 Is Essential for SARS-CoV-2 Beta and Omicron Infection
by
Metzdorf, Kristin
, Greweling-Pils, Marina C.
, Čičin-Šain, Luka
, Lüddecke, Tatjana
, Kempf, Amy M.
, Hoffmann, Markus
, Miller, Felicitas
, Jacobsen, Henning
, Bruder, Dunja
, Ciesek, Sandra
, Melcher, Lars
, Widera, Marek
, Nehlmeier, Inga
, Pöhlmann, Stefan
in
Analysis
/ Animals
/ Antiviral agents
/ Antiviral Agents - pharmacology
/ Antiviral Agents - therapeutic use
/ Antiviral drugs
/ Beta variant (B.1.351)
/ Body weight loss
/ Cathepsin L
/ Cell culture
/ Coronaviruses
/ COVID-19
/ COVID-19 infection
/ Cysteine proteinase
/ Dosage and administration
/ Experiments
/ Gene expression
/ Glycoproteins
/ Humans
/ Infections
/ Lungs
/ Mice
/ Mice, Inbred C57BL
/ mouse
/ Mutation
/ nose
/ Omicron variant (B.1.1.529)
/ pandemic
/ Pandemics
/ Plasmids
/ Proteins
/ Public health
/ Respiratory tract
/ SARS-CoV-2
/ Serine Endopeptidases - genetics
/ Serine proteinase
/ serine proteinases
/ Severe acute respiratory syndrome coronavirus 2
/ therapeutics
/ transmembrane serine protease TMPRSS2
/ Viruses
/ weight loss
2023
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TMPRSS2 Is Essential for SARS-CoV-2 Beta and Omicron Infection
Journal Article
TMPRSS2 Is Essential for SARS-CoV-2 Beta and Omicron Infection
2023
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Overview
The COVID-19 pandemic remains a global health threat and novel antiviral strategies are urgently needed. SARS-CoV-2 employs the cellular serine protease TMPRSS2 for entry into lung cells, and TMPRSS2 inhibitors are being developed for COVID-19 therapy. However, the SARS-CoV-2 Omicron variant, which currently dominates the pandemic, prefers the endo/lysosomal cysteine protease cathepsin L over TMPRSS2 for cell entry, raising doubts as to whether TMPRSS2 inhibitors would be suitable for the treatment of patients infected with the Omicron variant. Nevertheless, the contribution of TMPRSS2 to the spread of SARS-CoV-2 in the infected host is largely unclear. In this study, we show that the loss of TMPRSS2 strongly reduced the replication of the Beta variant in the nose, trachea and lung of C57BL/6 mice, and protected the animals from weight loss and disease. The infection of mice with the Omicron variant did not cause disease, as expected, but again, TMPRSS2 was essential for efficient viral spread in the upper and lower respiratory tract. These results identify the key role of TMPRSS2 in SARS-CoV-2 Beta and Omicron infection, and highlight TMPRSS2 as an attractive target for antiviral intervention.
Publisher
MDPI AG,MDPI
Subject
/ Animals
/ Antiviral Agents - pharmacology
/ Antiviral Agents - therapeutic use
/ COVID-19
/ Humans
/ Lungs
/ Mice
/ mouse
/ Mutation
/ nose
/ pandemic
/ Plasmids
/ Proteins
/ Serine Endopeptidases - genetics
/ Severe acute respiratory syndrome coronavirus 2
/ transmembrane serine protease TMPRSS2
/ Viruses
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