Author: Joshua A. Hayward; Mary Tachedjian; Adam Johnson; Tamsin B. Gordon; Jie Cui; Glenn A. Marsh; Michelle L. Baker; Lin-Fa Wang; Gilda Tachedjian
Title: Bats Possess Unique Variants of the Antiviral Restriction Factor Tetherin Document date: 2020_4_9
ID: eksi9yia_36
Snippet: In humans, l-tetherin acts as a virus sensor which induces NF-κB signaling in contrast to stetherin, which lacks the dual tyrosine motif required for eliciting this innate immune response (24, 25) . The findings presented here suggest that if bat tetherin proteins are confirmed to similarly mediate cytoplasmic domain-mediated immune signaling, then the Black-bearded Tomb bat, which only encodes a homolog of s-tetherin, would be predicted not to .....
Document: In humans, l-tetherin acts as a virus sensor which induces NF-κB signaling in contrast to stetherin, which lacks the dual tyrosine motif required for eliciting this innate immune response (24, 25) . The findings presented here suggest that if bat tetherin proteins are confirmed to similarly mediate cytoplasmic domain-mediated immune signaling, then the Black-bearded Tomb bat, which only encodes a homolog of s-tetherin, would be predicted not to mediate this effect.
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