Humanes Coronavirus NL63 (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Humanes Coronavirus NL63" in German language version.

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cdc.gov

doi.org

forbes.com

harvard.edu

ui.adsabs.harvard.edu

  • H. Hofmann, K. Pyrc, L. van der Hoek, M. Geier, B. Berkhout, S. Pöhlmann: Human coronavirus NL63 employs the severe acute respiratory syndrome coronavirus receptor for cellular entry. In: Proceedings of the National Academy of Sciences of the United States of America. Band 102. Jahrgang, Nr. 22, Mai 2005, S. 7988–7993, doi:10.1073/pnas.0409465102, PMID 15897467, PMC 1142358 (freier Volltext), bibcode:2005PNAS..102.7988H.

ictv.global

ictvonline.org

talk.ictvonline.org

mayoclinic.org

medscape.com

nih.gov

ncbi.nlm.nih.gov

  • S. Abdul-Rasool, B. C. Fielding: Understanding Human Coronavirus HCoV-NL63. In: The Open Virology Journal. Band 4. Jahrgang, Mai 2010, S. 76–84, doi:10.2174/1874357901004010076, PMID 20700397, PMC 2918871 (freier Volltext).
  • RefSeq: ACE2 angiotensin I converting enzyme 2 - Gene. In: NCBI. 28. Februar 2020, abgerufen am 21. März 2020: „Das von diesem Gen kodierte Protein gehört zur Angiotensin-converting-Enzym-Familie der Dipeptidylcarboxydipeptidasen und hat eine beträchtliche Homologie zum humanen Angiotensin-1-converting-Enzym. Dieses sekretierte Protein katalysiert die Spaltung von Angiotensin I in Angiotensin 1-9, und Angiotensin II in das Vasodilatator-Angiotensin 1-7. Die organ- und zellspezifische Expression dieses Gens legt nahe, dass es eine Rolle bei der Regulation der Herz-Kreislauf- und Nierenfunktion sowie der Fertilität spielen könnte. Zudem ist das kodierte Protein ein funktioneller Rezeptor für das Spike-Glykoprotein des humanen Coronavirus HCoV-NL63 und der humanen Schweres-akutes-Atemwegssyndrom-Coronaviren SARS-CoV und SARS-CoV-2 (COVID-19-Virus).“
    Englischer Originaltext:
    "The protein encoded by this gene belongs to the angiotensin-converting enzyme family of dipeptidyl carboxydipeptidases and has considerable homology to human angiotensin 1 converting enzyme. This secreted protein catalyzes the cleavage of angiotensin I into angiotensin 1-9, and angiotensin II into the vasodilator angiotensin 1-7. The organ- and cell-specific expression of this gene suggests that it may play a role in the regulation of cardiovascular and renal function, as well as fertility. In addition, the encoded protein is a functional receptor for the spike glycoprotein of the human coronavirus HCoV-NL63 and the human severe acute respiratory syndrome coronaviruses, SARS-CoV and SARS-CoV-2 (COVID-19 virus)."
  • A. R. Fehr, S. Perlman: Coronaviruses: an overview of their replication and pathogenesis. In: Methods in Molecular Biology. Band 1282. Jahrgang. Springer: H. J. Maier, E. Bickerton, P. Britton, 2015, S. 1–23, doi:10.1007/978-1-4939-2438-7_1, PMID 25720466, PMC 4369385 (freier Volltext).
  • L. van der Hoek, K. Pyrc, B. Berkhout: Human coronavirus NL63, a new respiratory virus. In: FEMS Microbiology Reviews. Band 30. Jahrgang, Nr. 5, September 2006, S. 760–773, doi:10.1111/j.1574-6976.2006.00032.x, PMID 16911043.
  • Yvonne Xinyi Lim, Yan Ling Ng, James P. Tam, Ding Xiang Liu: Human Coronaviruses: A Review of Virus–Host Interactions. In: Diseases. Band 4. Jahrgang, Nr. 3, 25. Juli 2016, ISSN 2079-9721, S. 26, doi:10.3390/diseases4030026, PMID 28933406, PMC 5456285 (freier Volltext): „Siehe Tabelle 1.“
  • L. van der Hoek, B. Berkhout: Questions concerning the New Haven coronavirus. In: The Journal of Infectious Diseases. Band 192. Jahrgang, Nr. 2, Juli 2005, S. 350–351; Antwort der Autoren S. 353–354, doi:10.1086/430795, PMID 15962232.
  • H. Hofmann, K. Pyrc, L. van der Hoek, M. Geier, B. Berkhout, S. Pöhlmann: Human coronavirus NL63 employs the severe acute respiratory syndrome coronavirus receptor for cellular entry. In: Proceedings of the National Academy of Sciences of the United States of America. Band 102. Jahrgang, Nr. 22, Mai 2005, S. 7988–7993, doi:10.1073/pnas.0409465102, PMID 15897467, PMC 1142358 (freier Volltext), bibcode:2005PNAS..102.7988H.
  • NCBI: Setracovirus (subgenus).
  • NCBI : NL63-related bat coronavirus strain BtKYNL63-9b. (species).
  • NCBI: Human coronavirus NL63. (species).
  • Lia van der Hoek, Ben Berkhout: Questions concerning the New Haven Coronavirus, The Journal of Infectious Diseases 192(2):350-351, August 2005; doi:10.1086/430795, PMID 15962232
  • Frank Esper, Carla Weibel, David Ferguson, Marie L. Landry, Jeffrey S. Kahn: Coronavirus HKU1 Infection in the United States. In: Emerging Infectious Diseases. Band 12. Jahrgang, Nr. 5, 2006, S. 775–779, doi:10.3201/eid1205.051316, PMID 16704837, PMC 3374449 (freier Volltext) – (medscape.com).
  • B. C. Fielding: Human coronavirus NL63: a clinically important virus? In: Future Microbiology. Band 6. Jahrgang, Nr. 2, Februar 2011, S. 153–159, doi:10.2217/fmb.10.166, PMID 21366416.

phac-aspc.gc.ca

  • Human Coronavirus. In: Public Health Agency of Canada. 19. August 2011, abgerufen am 22. Juli 2015.

plos.org

journals.plos.org

  • Alexandra M. Johansson: Cross-reactive and mono-reactive SARS-CoV-2 CD4+ T cells in prepandemic and COVID-19 convalescent individuals. In: PLOS Pathogens, Band 17, Nr. 2, 29. Dezember 2021, S. 1010203; doi:10.1371/journal.ppat.1010203, PDF.

researchgate.net

spektrum.de

zdb-katalog.de

  • Yvonne Xinyi Lim, Yan Ling Ng, James P. Tam, Ding Xiang Liu: Human Coronaviruses: A Review of Virus–Host Interactions. In: Diseases. Band 4. Jahrgang, Nr. 3, 25. Juli 2016, ISSN 2079-9721, S. 26, doi:10.3390/diseases4030026, PMID 28933406, PMC 5456285 (freier Volltext): „Siehe Tabelle 1.“
  • K Pyrc: Mosaic structure of human coronavirus NL63, one thousand years of evolution. In: Journal of Molecular Biology. Band 364. Jahrgang, 2006, ISSN 0022-2836, S. 964–973.