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21 results on '"mucin-like domain"'

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1. Ebolavirus evolution and emergence are associated with land use change.

2. Metabolic Engineering of Glycofusion Bispecific Antibodies for α-Dystroglycanopathies.

3. Targeting host O-linked glycan biosynthesis affects Ebola virus replication efficiency and reveals differential GalNAc-T acceptor site preferences on the Ebola virus glycoprotein.

4. The Mucin-Like Domain of the Ebola Glycoprotein Does Not Impact Virulence or Pathogenicity in Ferrets.

5. Cellular Chondroitin Sulfate and the Mucin-like Domain of Viral Glycoprotein C Promote Diffusion of Herpes Simplex Virus 1 While Heparan Sulfate Restricts Mobility.

7. Mucin-Like Domain of Mucosal Addressin Cell Adhesion Molecule-1 Facilitates Integrin α4β7-Mediated Cell Adhesion Through Electrostatic Repulsion

8. Filovirus Structural Biology: The Molecules in the Machine

9. Structure and role of O-Linked glycans in viral envelope proteins

10. Ebola Virus Glycoprotein Domains Associated with Protective Efficacy

11. Proteomics Computational Analyses Suggest That the Envelope Glycoproteins of Segmented Jingmen Flavi-Like Viruses are Class II Viral Fusion Proteins (β-Penetrenes) with Mucin-Like Domains

12. Structure and Role of O-Linked Glycans in Viral Envelope Proteins.

13. Ebola Virus Glycoprotein Domains Associated with Protective Efficacy

15. Proteomics Computational Analyses Suggest That the Envelope Glycoproteins of Segmented Jingmen Flavi-Like Viruses are Class II Viral Fusion Proteins (β-Penetrenes) with Mucin-Like Domains

16. Induction of ebolavirus cross-species immunity using retrovirus-like particles bearing the Ebola virus glycoprotein lacking the mucin-like domain

17. Ebola Virus Glycoprotein Domains Associated with Protective Efficacy.

18. Proteomics Computational Analyses Suggest That the Envelope Glycoproteins of Segmented Jingmen Flavi-Like Viruses are Class II Viral Fusion Proteins (β-Penetrenes) with Mucin-Like Domains.

19. Inferring Viral Dynamics from Sequence Data

20. Site-specific glycosylation of Ebola virus glycoprotein by human polypeptide GalNAc-transferase 1 induces cell adhesion defects.

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