Nipah virus attachment glycoprotein stalk C-terminal region links receptor binding to fusion triggering.

Qian Liu1 Birgit Bradel-Tretheway1 Abrrey I Monreal2 Jonel P Saludes2 Xiaonan Lu3 Anthony V Nicola4 Hector C Aguilar5
Affiliations 5 institutions
  1. Paul G. Allen School for Global Animal Health, Washington State University, Pullman, Washington, USA.
  2. Department of Chemistry, Washington State University, Pullman, Washington, USA.
  3. Food, Nutrition and Health Program, The University of British Columbia, Vancouver, British Columbia, Canada.
  4. Paul G. Allen School for Global Animal Health, Washington State University, Pullman, Washington, USA Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, Washington, USA.
  5. Paul G. Allen School for Global Animal Health, Washington State University, Pullman, Washington, USA Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, Washington, USA [email protected].

Abstract

Membrane fusion is essential for paramyxovirus entry into target cells and for the cell-cell fusion (syncytia) that results from many paramyxoviral infections. The concerted efforts of two membrane-integral viral proteins, the attachment (HN, H, or G) and fusion (F) glycoproteins, mediate membrane fusion. The emergent Nipah virus (NiV) is a highly pathogenic and deadly zoonotic paramyxovirus. We recently reported that upon cell receptor ephrinB2 or ephrinB3 binding, at least two conformational changes occur in the NiV-G head, followed by one in the NiV-G stalk, that subsequently result in F triggering and F execution of membrane fusion. However, the domains and residues in NiV-G that trigger F and the specific events that link receptor binding to F triggering are unknown. In the present study, we identified a NiV-G stalk C-terminal region (amino acids 159 to 163) that is important for multiple G functions, including G tetramerization, conformational integrity, G-F interactions, receptor-induced conformational changes in G, and F triggering. On the basis of these results, we propose that this NiV-G region serves as an important structural and functional linker between the NiV-G head and the rest of the stalk and is critical in propagating the F-triggering signal via specific conformational changes that open a concealed F-triggering domain(s) in the G stalk. These findings broaden our understanding of the mechanism(s) of receptor-induced paramyxovirus F triggering during viral entry and cell-cell fusion. The emergent deadly viruses Nipah virus (NiV) and Hendra virus belong to the Henipavirus genus in the Paramyxoviridae family. NiV infections target endothelial cells and neurons and, in humans, result in 40 to 75% mortality rates. The broad tropism of the henipaviruses and the unavailability of therapeutics threaten the health of humans and livestock. Viral entry into host cells is the first step of henipavirus infections, which ultimately cause syncytium formation. After attaching to the host cell receptor, henipaviruses enter the target cell via direct viral-cell membrane fusion mediated by two membrane glycoproteins: the attachment protein (G) and the fusion protein (F). In this study, we identified and characterized a region in the NiV-G stalk C-terminal domain that links receptor binding to fusion triggering via several important glycoprotein functions. These findings advance our understanding of the membrane fusion-triggering mechanism(s) of the henipaviruses and the paramyxoviruses.

Supporting text Virus Host Location
Virus Attachment 55 Virus Internalization 100 Animals 1948 Cell Line 158 Glycoproteins 23 Humans 1440 Nipah Virus 45 Protein Conformation 44 Viral Structural Proteins 5

Evidence records

2 total
Functional Mechanism
2 records · 2 evidence types
Evidence type
1 records
OVE1876
Key finding

Nipah virus uses ephrinB2 and ephrinB3 as cell receptors whose binding triggers conformational changes in the NiV-G attachment glycoprotein that initiate membrane fusion.

Virus
Host
Not specified
Location
Not specified
Supporting text

The emergent Nipah virus (NiV) is a highly pathogenic and deadly zoonotic paramyxovirus. We recently reported that upon cell receptor ephrinB2 or ephrinB3 binding, at least two conformational changes occur in the NiV-G head, followed by one in the NiV-G stalk, that subsequently result in F triggering and F execution of membrane fusion.

Method
receptor-binding assay | fusion-triggering functional study | mutational analysis
Receptors
ephrinB2 | ephrinB3
Host factors
NiV-G attachment glycoprotein | F fusion glycoprotein
Evidence type
1 records
OVE1877
Key finding

A Nipah virus G stalk C-terminal region comprising amino acids 159–163 was found to be critical for receptor-induced conformational change and fusion triggering, linking receptor binding to viral entry.

Virus
Host
Not specified
Location
Not specified
Supporting text

We identified a NiV-G stalk C-terminal region (amino acids 159 to 163) that is important for multiple G functions, including G tetramerization, conformational integrity, G-F interactions, receptor-induced conformational changes in G, and F triggering.

Genes or proteins
G glycoprotein | F glycoprotein
Receptors
ephrinB2 | ephrinB3
Mutations
amino acids 159–163 (C-terminal stalk region)
Mechanism types
receptor binding | host entry