๐ A transmembrane serine protease is linked to the severe acute respiratory syndrome coronavirus receptor and activates virus entry
Spike (S) proteins, the defining projections of the enveloped coronaviruses (Co. Vs), mediate cell entry by connecting viruses to plasma membrane receptors and by catalyzing subsequent virus-cell membrane fusions. The latter membrane fusion requires an S protein conformational flexibility that is facilitated by proteolytic cleavages. We hypothesized that the most relevant cellular proteases in this process are those closely linked to host cell receptors. The primary receptor for the human severe acute respiratory syndrome CoV (SARS) CoV is angiotensin-converting enzyme 2 (ACE2). ACE2 immunoprecipitation captured transmembrane protease/ serine subfamily member 2 (TMPRSS2), a known human airway and alveolar protease. ACE2 and TMPRSS2 colocalized on cell surfaces and enhanced the cell entry of both SARS S-pseudotyped HIV and authentic SARS-CoV. Enhanced entry correlated with TMPRSS2-mediated proteolysis of both S and ACE2. These findings indicate that a cell surface complex comprising a primary receptor and a separate endoprotease operates as a portal for activation of SARS-CoV cell entry. Copyright ยฉ 2011 American Society for Microbiology.
keywords
๐ severe acute (1373)
๐ host cell (262)
๐ cell surface (110)
๐ converting enzyme (162)
๐ respiratory syndrome (2004)
๐ angiotensin-converting enzyme (112)
๐ acute respiratory (1734)
๐ membrane fusion (105)
author
๐ค Shulla, Ana
๐ค Heald-Sargent, Taylor
๐ค Subramanya, Gitanjali
๐ค Zhao, Jincun
๐ค Perlman, Stanley
๐ค Gallagher, Tom
year
โฐ 2011
journal
๐ Journal of Virology
issn
๐ 0022538X 10985514
volume
85
number
2
page
873-882
citedbycount
72
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