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May 20, 2026PLoS Pathogens0 citationsOpen Access

FUT8-mediated core fucosylation of receptor APN drives entry of multiple alphacoronaviruses

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LSLimeng SunHuazhong Agricultural UniversityYXYixin XiangHunan Institute of Science and TechnologyYYYichen YangHuazhong Agricultural University

Key Points

  • This study investigates how FUT8-mediated core fucosylation affects alphacoronavirus entry through receptor APN.
  • Analyzed the interaction between FUT8 and pAPN to understand viral entry mechanisms.
  • Performed glycoproteomic analysis to confirm fucosylation modifications in wild-type versus KO cells.
  • Investigated FUT8's role across multiple species of alphacoronaviruses.
  • FUT8-mediated core fucosylation at pAPN N736 is crucial for binding to TGEV RBD.
  • Core fucosylation was confirmed in wild-type cells but nearly absent in knockout cells.
  • FUT8 facilitates entry of canine and feline CoVs by modifying APN at N740 and N747, respectively.

Abstract

Understanding the interaction mechanisms between coronaviruses (CoVs) and their hosts is crucial for understanding the viral replication cycle and identifying novel antiviral targets. In this study, we found alpha-(1,6)-fucosyltransferase (FUT8), via its fucosyltransferase activity, is involved in the several alphacoronaviruses (α-CoVs) spike-receptor aminopeptidase N (APN) interaction to regulate viral entry. Mechanistically, pAPN lacking FUT8-mediated modification showed no binding to the transmissible gastroenteritis virus (TGEV) RBD. The viral entry depends on core fucosylation at pAPN N736. Further pAPN glycoproteomic analysis confirmed that core fucosylation at N736 is indeed present in wild-type (WT) cells but almost abolished in KO cells, highlighting that FUT8 facilitates viral entry by mediating core fucosylation of pAPN N736. Interestingly, FUT8 is also essential for the entry of canine and feline CoVs, which use APN as their receptor, by mediating core fucosylation at N747 and N740 on canine and feline APN, respectively, demonstrating that FUT8 has a conserved function across these species. Overall, this study uncovers the role of FUT8 in multiple α-CoVs entry, revealing the importance of core fucosylation in viral replication and identifying FUT8 as a potential broad-spectrum antiviral target.

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Cite This Study

Sun et al. (2026) studied this question.

synapsesocial.com/papers/6a0d4f62f03e14405aa9aa9chttps://doi.org/10.1371/journal.ppat.1014227
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