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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.
Abstract:
Human cytomegalovirus (HCMV), a dsDNA, enveloped virus, is a ubiquitous pathogen that establishes lifelong latent infections and caused disease in persons with compromised immune systems, e.g., organ transplant recipients or AIDS patients. HCMV is also a leading cause of congenital viral infections in newborns. Entry of HCMV into cells requires the conserved glycoprotein B (gB), thought to function as a fusogen and reported to bind signaling receptors. gB also elicits a strong immune response in humans and induces the production of neutralizing antibodies although most anti-gB Abs are non-neutralizing. Here, we report the crystal structure of the HCMV gB ectodomain determined to 3.6-Å resolution, which is the first atomic-level structure of any betaherpesvirus glycoprotein. The structure of HCMV gB resembles the postfusion structures of HSV-1 and EBV homologs, establishing it as a new member of the class III viral fusogens. Despite structural similarities, each gB has a unique domain arrangement, demonstrating structural plasticity of gB that may accommodate virus-specific functional requirements. The structure illustrates how extensive glycosylation of the gB ectodomain influences antibody recognition. Antigenic sites that elicit neutralizing antibodies are more heavily glycosylated than those that elicit non-neutralizing antibodies, which suggest that HCMV gB uses glycans to shield neutralizing epitopes while exposing non-neutralizing epitopes. This glycosylation pattern may have evolved to direct the immune response towards generation of non-neutralizing antibodies thus helping HCMV to avoid clearance. HCMV gB structure provides a starting point for elucidation of its antigenic and immunogenic properties and aid in the design of recombinant vaccines and monoclonal antibody therapies.
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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