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Published on: February 10, 2022
Structural basis for the recognition of human cytomegalovirus glycoprotein B by a neutralizing human antibody
Nadja Spindler1, Uschi Diestel2, Joachim D Stump3
1Institut für Klinische und Molekulare Virologie, Friedrich-Alexander Universität Erlangen-Nürnberg, Erlangen, Germany.
Abstract:
Human cytomegalovirus (HCMV) infections are life-threating to people with a compromised or immature immune system. Upon adhesion, fusion of the virus envelope with the host cell is initiated. In this step, the viral glycoprotein gB is considered to represent the major fusogen. Here, we present for the first time structural data on the binding of an anti-herpes virus antibody and describe the atomic interactions between the antigenic domain Dom-II of HCMV gB and the Fab fragment of the human antibody SM5-1. The crystal structure shows that SM5-1 binds Dom-II almost exclusively via only two CDRs, namely light chain CDR L1 and a 22-residue-long heavy chain CDR H3. Two contiguous segments of Dom-II are targeted by SM5-1, and the combining site includes a hydrophobic pocket on the Dom-II surface that is only partially filled by CDR H3 residues. SM5-1 belongs to a series of sequence-homologous anti-HCMV gB monoclonal antibodies that were isolated from the same donor at a single time point and that represent different maturation states. Analysis of amino acid substitutions in these antibodies in combination with molecular dynamics simulations show that key contributors to the picomolar affinity of SM5-1 do not directly interact with the antigen but significantly reduce the flexibility of CDR H3 in the bound and unbound state of SM5-1 through intramolecular side chain interactions. Thus, these residues most likely alleviate unfavorable binding entropies associated with extra-long CDR H3s, and this might represent a common strategy during antibody maturation. Models of entire HCMV gB in different conformational states hint that SM5-1 neutralizes HCMV either by blocking the pre- to postfusion transition of gB or by precluding the interaction with additional effectors such as the gH/gL complex.
Insights
This study reveals the atomic details of how the SM5-1 antibody binds to human cytomegalovirus (HCMV) glycoprotein gB, crucial for viral infection. The findings illuminate antibody maturation strategies for neutralizing HCMV.
Area of Science:
- Virology
- Immunology
- Structural Biology
Background:
- Human cytomegalovirus (HCMV) poses a severe threat to immunocompromised individuals.
- Viral glycoprotein gB is essential for HCMV envelope fusion with host cells.
Purpose of the Study:
- To determine the structural basis of antibody-mediated HCMV gB neutralization.
- To elucidate the atomic interactions between HCMV gB's antigenic domain Dom-II and the SM5-1 antibody Fab fragment.
Main Methods:
- X-ray crystallography to obtain structural data.
- Molecular dynamics simulations to analyze antibody-antigen interactions and flexibility.
- Analysis of antibody sequence homology and maturation states.
Main Results:
- The crystal structure reveals SM5-1 binding to Dom-II via CDR L1 and a long CDR H3.
- Key affinity-enhancing residues in SM5-1 do not directly bind but reduce CDR H3 flexibility.
- This flexibility reduction may be a common antibody maturation strategy to overcome entropic penalties.
Conclusions:
- SM5-1 neutralizes HCMV by potentially blocking gB's fusion transition or interaction with other viral components.
- Structural insights into SM5-1-gB interactions provide a basis for designing novel antiviral therapies.
- Understanding antibody maturation mechanisms can inform the development of more effective vaccines and therapeutics against HCMV.
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