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.

Journal of Virology
|August 7, 2009
PubMed

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.