Crystal Structure of the Human Cytomegalovirus Glycoprotein B

Heidi G Burke1, Ekaterina E Heldwein1

  • 1Department of Molecular Biology and Microbiology and Graduate Program in Molecular Microbiology, Sackler School of Graduate Biomedical Sciences, Tufts University School of Medicine, Boston, Massachusetts, United States of America.

Plos Pathogens
|October 21, 2015
PubMed

Insights

The first atomic structure of human cytomegalovirus (HCMV) glycoprotein B reveals it

Area of Science:

  • Virology
  • Structural Biology
  • Immunology

Background:

  • Human cytomegalovirus (HCMV) is a widespread pathogen causing disease in immunocompromised individuals and congenital infections.
  • HCMV entry relies on glycoprotein B (gB), a potential fusogen targeted by antibodies, though most are non-neutralizing.
  • Understanding HCMV gB is crucial for developing antiviral therapies and vaccines.

Purpose of the Study:

  • To determine the atomic-level crystal structure of the HCMV gB ectodomain.
  • To classify HCMV gB based on its structural similarities to other viral fusogens.
  • To investigate the role of glycosylation in HCMV gB's antigenicity and immunogenicity.

Main Methods:

  • X-ray crystallography to determine the 3.6-Å resolution structure of the HCMV gB ectodomain.
  • Comparative structural analysis with homologous glycoproteins from other herpesviruses.
  • Analysis of glycosylation patterns and their correlation with antibody recognition sites.

Main Results:

  • The HCMV gB ectodomain structure was determined, revealing it as a class III viral fusogen.
  • HCMV gB exhibits structural plasticity, with unique domain arrangements compared to homologs.
  • Extensive glycosylation shields neutralizing epitopes while exposing non-neutralizing ones, potentially aiding immune evasion.

Conclusions:

  • The HCMV gB structure provides insights into its function as a viral fusogen and its interaction with the immune system.
  • Glycosylation plays a key role in modulating antibody responses to HCMV gB.
  • This structural information can guide the development of novel HCMV vaccines and antibody-based therapies.

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