Tetherin: Difference between revisions

From Proteopedia
Jump to navigationJump to search
No edit summary
Michal Harel (talk | contribs)
No edit summary
Line 3: Line 3:




'''Tetherin''' has been shown to prevent the release of HIV-1 virions and may be an effective inhibitor of other enveloped viruses as well such as Lassa and Marburg viruses. Tetherin inhibits the release of virions by binding to viral particles budding from the cell membrane, preventing the release of these infectious particles.   
'''Tetherin''' or '''bone marrow stromal antigen 2''' (BST-2) has been shown to prevent the release of HIV-1 virions and may be an effective inhibitor of other enveloped viruses as well such as Lassa and Marburg viruses. Tetherin inhibits the release of virions by binding to viral particles budding from the cell membrane, preventing the release of these infectious particles.   
The tetherin protein is always found on the surface of B lymphocytes, dendritic cells, and activated T lymphocytes.  In brain, kidney, liver, skeletal muscle, pancreas and heart cells.  The tetherin gene can be stimulated to be expressed by the production of alpha Interferon, a cytokine.   
The tetherin protein is always found on the surface of B lymphocytes, dendritic cells, and activated T lymphocytes.  In brain, kidney, liver, skeletal muscle, pancreas and heart cells.  The tetherin gene can be stimulated to be expressed by the production of alpha Interferon, a cytokine.   



Revision as of 09:21, 23 November 2020

Glycosylated human tetherin ectodomain dimer 2xg7

Drag the structure with the mouse to rotate

3D structures of tetherin

Updated on 23-November-2020

Human Immunodeficiency Virus, Viral Infections, 2xg7, 3mqb, 3mqc – hBST2 ectodomain – human
3mq7, 3mq9, 2lk9 - hBST2 ectodomain (mutant)
3ni0 - BST2 ectodomain – mouse


References

Sakuma, Noda, Urata, Kawaoka, & Yasuda (2009). Inhibition of Lassa and Marburg Virus Production by Tetherin. Journal of Virology. 83:2382-2385.

Neil, Zang, & Beiniasz (2008). Tetherin inhibits retroviral release and is antagonized by HIV-1 Vpu. Nature. 451: 425-430.

Proteopedia Page Contributors and Editors (what is this?)

Kim Smith, Michal Harel, Alexander Berchansky, David Canner