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Published on: May 6, 2015
CD46 and DSG2 synergistically mediate human adenovirus type 7 infection
Lihua Ye1, Chuncong Mo1, Jinwei Yuan2,3
1State Key Laboratory of Respiratory Disease, National Clinical Research Center for Respiratory Disease, National Center for Respiratory Medicine, Joint International Research Laboratory of Respiratory Health, Guangzhou Institute of Respiratory Health, The First Affiliated Hospital, Guangzhou Medical University, Guangzhou, China.
Abstract:
Human adenovirus type 7 (HAdV-7) is an important pathogen associated with severe respiratory infections; however, its precise cellular entry mechanism has not been fully elucidated. Previous studies have identified CD46 and desmoglein-2 (DSG2) as potential receptors for certain group B adenoviruses; however, the receptor usage of HAdV-7 infection remains unclear. This study provides comprehensive evidence that HAdV-7 utilizes CD46 and DSG2 as functional co-receptors that act synergistically to mediate efficient infection. Using a multifaceted experimental approach that integrated in vitro and in vivo models, including receptor overexpression, RNA interference, competitive binding assays, antibody blockade, and surface plasmon resonance analysis, as well as differentiated human bronchial epithelial cells (HBEpiCs) and humanized mouse models, dual-receptor engagement was demonstrated to significantly enhance viral entry. Furthermore, in humanized dual-receptor transgenic mice expressing both receptors, this synergistic interaction correlated directly with increased viral replication and enhanced inflammatory pathology compared with single-receptor or wild-type controls. Mechanistic analyses further revealed that the viral fiber knob domain simultaneously can bind CD46 and DSG2 at distinct epitopes with differing affinities. This synergistic physical interaction contributes to the observed enhancement of infection efficiency. Collectively, these findings elucidate a critical aspect of HAdV-7 pathogenesis by establishing the CD46-DSG2 dual-receptor system as an important determinant of viral infectivity and virulence. These insights not only resolve long-standing controversies regarding receptor usage but also provide a structural framework for designing adenovirus vectors with optimized tissue tropism and reduced off-target effects and identify a target for broad-spectrum antivirals targeting cooperative engagement.
Importance:
Human adenovirus type 7 (HAdV-7) is a clinically important pathogen associated with severe respiratory infections, yet its cellular entry mechanism has remained incompletely defined. Most existing studies have focused on individual receptor functions, leaving critical knowledge gaps unresolved. It remains unclear whether HAdV-7 relies on both CD46 and desmoglein-2 (DSG2), whether these receptors act synergistically or independently, and how their interactions influence viral infection dynamics. This study provides comprehensive evidence that HAdV-7 utilizes CD46 and DSG2 as synergistic co-receptors to mediate efficient infection, viral replication, and inflammatory pathology. This study resolves long-standing controversies regarding receptor usage in HAdV-7, elucidates a novel dual-receptor mechanism of infection, and offers a foundation for the design of novel adenovirus vectors with optimized tissue tropism.
Insights
Human adenovirus type 7 (HAdV-7) uses CD46 and desmoglein-2 (DSG2) together to infect cells. This dual-receptor mechanism enhances viral replication and causes more severe respiratory illness.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Human adenovirus type 7 (HAdV-7) causes severe respiratory infections.
- Its cellular entry mechanism and receptor usage are not fully understood.
- Previous research suggested CD46 and DSG2 as potential receptors for some adenoviruses.
Purpose of the Study:
- To comprehensively investigate the cellular entry mechanism of HAdV-7.
- To determine if HAdV-7 utilizes CD46 and DSG2 as co-receptors.
- To elucidate the synergistic interaction between CD46 and DSG2 in HAdV-7 infection.
Main Methods:
- Overexpression and RNA interference of CD46 and DSG2.
- Competitive binding assays and antibody blockade.
- Surface plasmon resonance analysis.
- In vitro and in vivo models, including human bronchial epithelial cells and humanized mice.
Main Results:
- HAdV-7 efficiently utilizes CD46 and DSG2 as synergistic co-receptors.
- Dual-receptor engagement significantly enhances viral entry and replication.
- Synergistic interaction correlates with increased inflammatory pathology in vivo.
- The viral fiber knob binds both CD46 and DSG2 at distinct epitopes.
Conclusions:
- HAdV-7 employs a novel dual-receptor mechanism involving CD46 and DSG2.
- This synergistic interaction is critical for HAdV-7 infectivity and virulence.
- Findings resolve controversies regarding HAdV-7 receptor usage.
- Provides a basis for designing improved adenovirus vectors and antiviral strategies.

