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  • SARS-CoV-2 Receptor ACE2 Is...
    Ziegler, Carly G.K.; Allon, Samuel J.; Nyquist, Sarah K.; Mbano, Ian M.; Tzouanas, Constantine N.; Cao, Yuming; Hauser, Blake M.; Feldman, Jared; Muus, Christoph; Wadsworth, Marc H.; Kazer, Samuel W.; Hughes, Travis K.; Doran, Benjamin; Gatter, G. James; Vukovic, Marko; Taliaferro, Faith; Mead, Benjamin E.; Guo, Zhiru; Gras, Delphine; Plaisant, Magali; Ansari, Meshal; Angelidis, Ilias; Adler, Heiko; Sucre, Jennifer M.S.; Taylor, Chase J.; Lin, Brian; Waghray, Avinash; Mitsialis, Vanessa; Buchheit, Kathleen M.; Boyce, Joshua A.; Barrett, Nora A.; Laidlaw, Tanya M.; Carroll, Shaina L.; Colonna, Lucrezia; Yu, Alison; Gideon, Hannah P.; Lin, Philana Ling; Bingle, Colin D.; Snapper, Scott B.; Kropski, Jonathan A.; Theis, Fabian J.; Schiller, Herbert B.; Zaragosi, Laure-Emmanuelle; Barbry, Pascal; Leslie, Alasdair; Kiem, Hans-Peter; Flynn, JoAnne L.; Fortune, Sarah M.; Berger, Bonnie; Finberg, Robert W.; Garber, Manuel; Schmidt, Aaron G.; Lingwood, Daniel; Shalek, Alex K.; Ordovas-Montanes, Jose; Banovich, Nicholas; Barbry, Pascal; Desai, Tushar; Duong, Thu Elizabeth; Eickelberg, Oliver; Falk, Christine; Farzan, Michael; Glass, Ian; Haniffa, Muzlifah; Hung, Deborah; Kaminski, Naftali; Krasnow, Mark; Kuhnemund, Malte; Lafyatis, Robert; Lee, Haeock; Leroy, Sylvie; Lundeberg, Joakim; Meyer, Kerstin; Misharin, Alexander; Nawijn, Martijn; Nikolic, Marko Z.; Ordovas-Montanes, Jose; Pe’er, Dana; Quake, Stephen; Rajagopal, Jay; Tata, Purushothama Rao; Regev, Aviv; Reyfman, Paul A.; Rosen, Orit; Saeb-Parsy, Kourosh; Samakovlis, Christos; Schiller, Herbert; Schultze, Joachim L.; Seibold, Max A.; Shalek, Alex K.; Shepherd, Douglas; Sun, Xin; Theis, Fabian; Tsankov, Alexander; von Papen, Michael; Whitsett, Jeffrey; Xavier, Ramnik; Xu, Yan; Zaragosi, Laure-Emmanuelle; Zhang, Kun

    Cell, 05/2020, Letnik: 181, Številka: 5
    Journal Article

    There is pressing urgency to understand the pathogenesis of the severe acute respiratory syndrome coronavirus clade 2 (SARS-CoV-2), which causes the disease COVID-19. SARS-CoV-2 spike (S) protein binds angiotensin-converting enzyme 2 (ACE2), and in concert with host proteases, principally transmembrane serine protease 2 (TMPRSS2), promotes cellular entry. The cell subsets targeted by SARS-CoV-2 in host tissues and the factors that regulate ACE2 expression remain unknown. Here, we leverage human, non-human primate, and mouse single-cell RNA-sequencing (scRNA-seq) datasets across health and disease to uncover putative targets of SARS-CoV-2 among tissue-resident cell subsets. We identify ACE2 and TMPRSS2 co-expressing cells within lung type II pneumocytes, ileal absorptive enterocytes, and nasal goblet secretory cells. Strikingly, we discovered that ACE2 is a human interferon-stimulated gene (ISG) in vitro using airway epithelial cells and extend our findings to in vivo viral infections. Our data suggest that SARS-CoV-2 could exploit species-specific interferon-driven upregulation of ACE2, a tissue-protective mediator during lung injury, to enhance infection. Display omitted •Meta-analysis of human, non-human primate, and mouse single-cell RNA-seq datasets for putative SARS-CoV-2 targets•Type II pneumocytes, nasal secretory cells, and absorptive enterocytes are ACE2+TMPRSS2+•Interferon and influenza increase ACE2 in human nasal epithelia and lung tissue•Mouse Ace2 is not upregulated by interferon, raising implications for disease modeling Analysis of single-cell RNA-seq datasets from human, non-human primate, and mouse barrier tissues identifies putative cellular targets of SARS-CoV-2 on the basis of ACE2 and TMPRSS2 expression. ACE2 represents a previously unappreciated interferon-stimulated gene in human, but not mouse, epithelial tissues, identifying anti-viral induction of a host tissue-protective mechanism, but also a potential means for viral exploitation of the host response.