Distinct Cellular Interactions of Secreted and Transmembrane Ebola Virus Glycoproteins

The mechanisms by which Ebola virus evades detection and infects cells to cause hemorrhagic fever have not been defined, though its glycoprotein, synthesized in either a secreted or transmembrane form, is likely involved. Here the secreted glycoprotein was found to interact with neutrophils through...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 1998-02, Vol.279 (5353), p.1034-1037
Hauptverfasser: Yang, Zhi-yong, Delgado, Rafael, Xu, Ling, Todd, Robert F., Nabel, Elizabeth G., Sanchez, Anthony, Nabel, Gary J.
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Sprache:eng
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Zusammenfassung:The mechanisms by which Ebola virus evades detection and infects cells to cause hemorrhagic fever have not been defined, though its glycoprotein, synthesized in either a secreted or transmembrane form, is likely involved. Here the secreted glycoprotein was found to interact with neutrophils through CD16b, the neutrophil-specific form of the Fc γ receptor III, whereas the transmembrane glycoprotein was found to interact with endothelial cells but not neutrophils. A murine retroviral vector pseudotyped with the transmembrane glycoprotein preferentially infected endothelial cells. Thus, the secreted glycoprotein inhibits early neutrophil activation, which likely affects the host response to infection, whereas binding of the transmembrane glycoprotein to endothelial cells may contribute to the hemorrhagic symptoms of this disease.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.279.5353.1034