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Updated: Jun 27, 2026

Engineering Antiviral Agents via Surface Plasmon Resonance
Published on: June 14, 2022
Inhibition of Lassa and Marburg virus production by tetherin
Toshie Sakuma1, Takeshi Noda, Shuzo Urata
1First Department of Forensic Science, National Research Institute of Police Science, Kashiwa 277-0882, Japan.
Abstract:
Recently, tetherin has been identified as an effective cellular factor that prevents the release of human immunodeficiency virus type 1. Here, we show that the production of virus-like particles induced by viral matrix proteins of Lassa virus or Marburg virus was markedly inhibited by tetherin and that N-linked glycosylation of tetherin was dispensable for this antiviral activity. Our data also suggest that viral matrix proteins or one or more components that originate from host cells are targets of tetherin but that viral surface glycoproteins are not. These results suggest that tetherin inhibits the release of a wide variety of enveloped viruses from host cells by a common mechanism.
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