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Updated: Jun 21, 2026

Method for Measurement of Viral Fusion Kinetics at the Single Particle Level
Published on: September 7, 2009
Probing the spatial organization of measles virus fusion complexes
Tanja Paal1, Melinda A Brindley, Courtney St Clair
1Department of Pediatrics, Emory University School of Medicine and Children's Healthcare of Atlanta, Atlanta, Georgia 30322, USA.
Abstract:
The spatial organization of metastable paramyxovirus fusion (F) and attachment glycoprotein hetero-oligomers is largely unknown. To further elucidate the organization of functional fusion complexes of measles virus (MeV), an archetype of the paramyxovirus family, we subjected central predictions of alternative docking models to experimental testing using three distinct approaches. Carbohydrate shielding through engineered N-glycans indicates close proximity of a membrane-distal, but not membrane-proximal, section of the MeV attachment (H) protein stalk domain to F. Directed mutagenesis of this section identified residues 111, 114, and 118 as modulators of avidity of glycoprotein interactions and determinants of F triggering. Stalk-length variation through deletion or insertion of HR elements at positions flanking this section demonstrates that the location of the stalk segment containing these residues cannot be altered in functional fusion complexes. In contrast, increasing the distance between the H head domains harboring the receptor binding sites and this section through insertion of structurally rigid alpha-helical domains with a pitch of up to approximately 75 A downstream of stalk position 118 partially maintains functionality in transient expression assays and supports efficient growth of recombinant virions. In aggregate, these findings argue against specific protein-protein contacts between the H head and F head domains but instead support a docking model that is characterized by short-range contacts between the prefusion F head and the attachment protein stalk, possibly involving H residues 111, 114, and 118, and extension of the head domain of the attachment protein above prefusion F.
Insights
Measles virus (MeV) fusion (F) and attachment (H) glycoproteins interact via short-range contacts between the F head and H stalk. Specific residues in the H stalk are crucial for MeV fusion complex organization and function.
Area of Science:
- Virology
- Structural Biology
- Molecular Biology
Background:
- The spatial arrangement of paramyxovirus fusion (F) and attachment (H) glycoproteins in hetero-oligomers is not well understood.
- Measles virus (MeV) serves as a model for studying paramyxovirus fusion complexes.
Purpose of the Study:
- To investigate the structural organization of MeV fusion (F) and attachment (H) glycoprotein complexes.
- To experimentally test alternative docking models for MeV functional fusion complexes.
Main Methods:
- Engineered N-glycans for carbohydrate shielding to probe protein proximity.
- Directed mutagenesis to identify key residues in the H protein stalk.
- Stalk-length variation via deletions/insertions to assess structural constraints.
- Insertion of rigid domains to alter distances between H head and stalk domains.
Main Results:
- Carbohydrate shielding revealed close proximity between the membrane-distal H stalk and F.
- Mutagenesis identified MeV H residues 111, 114, and 118 as critical for glycoprotein avidity and F triggering.
- Altering stalk length demonstrated the fixed location of the critical stalk segment.
- Increasing the distance between H head and stalk partially maintained fusion functionality and viral growth.
Conclusions:
- Findings support a docking model with short-range contacts between prefusion F head and H stalk, not direct H head-F head interactions.
- MeV H residues 111, 114, and 118 are likely involved in these critical stalk-head interactions.
- The H head domain extends above prefusion F in the functional fusion complex.

