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Isolation of Viral Replication Compartment-enriched Sub-nuclear Fractions from Adenovirus-infected Normal Human Cells
Published on: November 12, 2015
Localization of regions in CD46 that interact with adenovirus
Anuj Gaggar1, Dmitry M Shayakhmetov, M Kathryn Liszewski
1University of Washington School of Medicine, Division of Medical Genetics, Box 357720, Seattle, WA 98195, USA.
Abstract:
A variety of pathogens use CD46, a ubiquitously expressed membrane protein that regulates complement activation, as a cellular attachment receptor. While the CD46 binding sites of several pathogens, including measles virus, Neisseria gonorrhea, and human herpesvirus 6, have been described, the region of CD46 responsible for adenovirus binding has not been determined. In this study, we used competition experiments with known CD46 ligands, CD46-specific antibodies, and a set of CD46 mutants to localize the binding domain for the group B adenovirus serotype 35 (Ad35). Our results show that Ad35 competes with measles virus for binding to CD46 but not with complement protein C3b. We further show that this interaction is a protein-protein interaction and that N glycosylations do not critically contribute to infection with Ad35 fiber-containing Ad vectors. Our data demonstrate that the native conformation of the CCP2 domain is crucial for Ad35 binding and that the substitution of amino acids at positions 130 to 135 or 152 to 156 completely abolishes the receptor function of CD46. These regions localize to the same planar face of CD46 and likely form an extended adenovirus binding surface, since no single amino acid substitution within these areas eliminates virus binding. Finally, we demonstrate that the infection with a virus possessing human group B serotype Ad11 fibers is also mediated by the CCP2 domain. This information is important to better characterize the mechanisms of the receptor recognition by adenovirus relative to other pathogens that interact with CD46, and it may help in the design of antiviral therapeutics against adenovirus serotypes that use CD46 as a primary cellular attachment receptor.
Insights
Adenoviruses bind to the CD46 protein using its CCP2 domain, similar to measles virus. Specific amino acid regions on CD46 are critical for this interaction, offering targets for antiviral therapies.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- CD46 is a cell surface protein regulating complement activation and serving as a receptor for various pathogens.
- While binding sites for measles virus and other pathogens on CD46 are known, the adenovirus binding region remained unidentified.
Purpose of the Study:
- To identify the specific region of CD46 responsible for binding by group B adenoviruses, specifically serotype 35 (Ad35).
- To compare Ad35 binding to CD46 with that of other known CD46 ligands.
Main Methods:
- Competition assays using known CD46 ligands and CD46-specific antibodies.
- Analysis of CD46 mutants to pinpoint the binding domain.
- Investigation of the role of N-glycosylation in Ad35 binding.
Main Results:
- Ad35 competes with measles virus for CD46 binding, but not with complement protein C3b.
- The CCP2 domain of CD46 is essential for Ad35 binding, with specific amino acid substitutions abolishing receptor function.
- Ad11 fibers also utilize the CD46 CCP2 domain for infection.
Conclusions:
- The CCP2 domain of CD46 forms a critical binding surface for group B adenoviruses.
- Understanding this interaction is key for characterizing adenovirus receptor recognition and designing targeted antiviral strategies.
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