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DESC1 and MSPL activate influenza A viruses and emerging coronaviruses for host cell entry
Pawel Zmora1, Paulina Blazejewska1, Anna-Sophie Moldenhauer1
1Infection Biology Unit, German Primate Center, Göttingen, Germany.
Abstract:
The type II transmembrane serine protease (TTSP) TMPRSS2 cleaves and activates the influenza virus and coronavirus surface proteins. Expression of TMPRSS2 is essential for the spread and pathogenesis of H1N1 influenza viruses in mice. In contrast, H3N2 viruses are less dependent on TMPRSS2 for viral amplification, suggesting that these viruses might employ other TTSPs for their activation. Here, we analyzed TTSPs, reported to be expressed in the respiratory system, for the ability to activate influenza viruses and coronaviruses. We found that MSPL and, to a lesser degree, DESC1 are expressed in human lung tissue and cleave and activate the spike proteins of the Middle East respiratory syndrome and severe acute respiratory syndrome coronaviruses for cell-cell and virus-cell fusion. In addition, we show that these proteases support the spread of all influenza virus subtypes previously pandemic in humans. In sum, we identified two host cell proteases that could promote the amplification of influenza viruses and emerging coronaviruses in humans and might constitute targets for antiviral intervention. Importance: Activation of influenza viruses by host cell proteases is essential for viral infectivity and the enzymes responsible are potential targets for antiviral intervention. The present study demonstrates that two cellular serine proteases, DESC1 and MSPL, activate influenza viruses and emerging coronaviruses in cell culture and, because of their expression in human lung tissue, might promote viral spread in the infected host. Antiviral strategies aiming to prevent viral activation might thus need to encompass inhibitors targeting MSPL and DESC1.
Insights
Two host proteases, DESC1 and MSPL, activate influenza and coronaviruses. These enzymes, found in human lungs, may promote viral spread and offer targets for antiviral therapies.
Area of Science:
- Virology
- Biochemistry
- Molecular Biology
Background:
- Type II transmembrane serine proteases (TTSPs) like TMPRSS2 activate influenza and coronaviruses.
- TMPRSS2 is crucial for H1N1 influenza virus spread but less so for H3N2, suggesting alternative proteases are involved.
Purpose of the Study:
- To identify respiratory system-expressed TTSPs capable of activating influenza and coronaviruses.
- To investigate the role of MSPL and DESC1 in viral activation and potential as antiviral targets.
Main Methods:
- Analysis of TTSP expression in human lung tissue.
- In vitro cleavage and activation assays for influenza and coronavirus spike proteins.
- Assessment of protease support for viral spread.
Main Results:
- MSPL and DESC1 are expressed in human lung tissue.
- Both proteases cleave and activate spike proteins of MERS-CoV and SARS-CoV, facilitating cell-cell and virus-cell fusion.
- DESC1 and MSPL support the spread of all pandemic human influenza virus subtypes.
Conclusions:
- MSPL and DESC1 are identified as host cell proteases that can amplify influenza viruses and emerging coronaviruses.
- These proteases are potential targets for antiviral interventions against influenza and coronaviruses.
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