Trost JF, et al. A conserved histidine in Group-1 influenza subtype hemagglutinin proteins is essential for membrane fusion activity. Virology. 2019 Aug 6;536:78-90.
Influenza A viruses enter host cells through the endocytic pathway, where acidification triggers conformational changes of the viral hemagglutinin (HA) to drive membrane fusion. During this process, the HA fusion peptide is extruded from its buried position in the neutral pH structure and targeted to the endosomal membrane. Conserved ionizable residues near the fusion peptide may play a role in initiating these structural rearrangements. We targeted highly conserved histidine residues in this region, at HA1 position 17 of Group-2 HA subtypes and HA2 position 111 of Group-1 HA subtypes, to determine their role in fusion activity. WT and mutant HA proteins representing several subtypes were expressed and characterized, revealing that His 111 is essential for HA functional activity of Group-1 subtypes, supporting continued efforts to target this region of the HA structure for vaccination strategies and the design of antiviral compounds.
See Also:
Latest articles in those days:
- [preprint]Mutational fitness landscapes of diverse human influenza H1N1 neuraminidases 6 hours ago
- [preprint]A modelling challenge to improve preparedness for highly pathogenic avian influenza epidemics: objectives, design and synthetic data generation 6 hours ago
- Influenza A H1N1 Infection Triggers Endothelial Immunothrombosis via TNF-α–Tissue Factor–Thrombin Signaling in Human Brain Microvascular Endothelial Cells 7 hours ago
- Antiviral Susceptibility of Clade 2.3.4.4b H5N1 and H5N5 Influenza Viruses Detected in Birds in Russia During 2021-2022 7 hours ago
- Dairy producers´ perceptions of highly pathogenic avian influenza (HPAI) H5N1 and their influence on implementation of biosecurity changes 1 days ago
[Go Top] [Close Window]


