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Updated: Jun 11, 2026

Utilizing the Antigen Capsid-Incorporation Strategy for the Development of Adenovirus Serotype 5-Vectored Vaccine Approaches
Published on: May 6, 2015
Integrin alphavbeta5 is a primary receptor for adenovirus in CAR-negative cells
Cynthia Lyle1, Frank McCormick
1UCSF Helen Diller Family Comprehensive Cancer Center, University of California, San Francisco, San Francisco, CA 94158, USA. cynthia.l.lyle@gmail.com
Background:
Viruses bind to specific cellular receptors in order to infect their hosts. The specific receptors a virus uses are important factors in determining host range, cellular tropism, and pathogenesis. For adenovirus, the existing model of entry requires two receptor interactions. First, the viral fiber protein binds Coxsackie and Adenovirus Receptor (CAR), its primary cellular receptor, which docks the virus to the cell surface. Next, viral penton base engages cellular integrins, coreceptors thought to be required exclusively for internalization and not contributing to binding. However, a number of studies reporting data which conflicts with this simple model have been published. These observations have led us to question the proposed two-step model for adenovirus infection.
Results:
In this study we report that cells which express little to no CAR can be efficiently transduced by adenovirus. Using competition experiments between whole virus and soluble viral fiber protein or integrin blocking peptides, we show virus binding is not dependent on fiber binding to cells but rather on penton base binding cellular integrins. Further, we find that binding to low CAR expressing cells is inhibited specifically by a blocking antibody to integrin alphavbeta5, demonstrating that in these cells integrin alphavbeta5 and not CAR is required for adenovirus attachment. The binding mediated by integrin alphavbeta5 is extremely high affinity, in the picomolar range.
Conclusions:
Our data further challenges the model of adenovirus infection in which binding to primary receptor CAR is required in order for subsequent interactions between adenovirus and integrins to initiate viral entry. In low CAR cells, binding occurs through integrin alphavbeta5, a receptor previously thought to be used exclusively in internalization. We show for the first time that integrin alphavbeta5 can be used as an alternate binding receptor.
Insights
Adenovirus can infect cells without the primary receptor, Coxsackie and Adenovirus Receptor (CAR). Instead, penton base binding to integrin alphavbeta5 mediates high-affinity attachment, challenging the traditional two-step model.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Adenovirus entry into host cells typically involves binding to Coxsackie and Adenovirus Receptor (CAR) followed by integrin engagement.
- This established model suggests CAR is essential for initial docking and integrins for internalization.
- Conflicting data necessitates a re-evaluation of the adenovirus infection mechanism.
Purpose of the Study:
- To investigate the role of cellular receptors in adenovirus binding and entry.
- To challenge the existing two-step model of adenovirus infection.
- To identify alternative receptors involved in adenovirus attachment.
Main Methods:
- Adenovirus transduction experiments in cells with varying CAR expression levels.
- Competition assays using soluble viral fiber protein and integrin-blocking peptides.
- Inhibition studies with blocking antibodies against specific integrins, including alphavbeta5.
Main Results:
- Adenovirus efficiently transduced cells with low or no CAR expression.
- Virus binding was mediated by penton base interaction with cellular integrins, not fiber-CAR interaction.
- Integrin alphavbeta5, not CAR, was required for adenovirus attachment to low-CAR cells.
- Integrin alphavbeta5-mediated binding demonstrated high affinity, in the picomolar range.
Conclusions:
- The proposed model of adenovirus infection requiring CAR for initial binding is challenged.
- Integrin alphavbeta5 functions as an alternative primary attachment receptor for adenovirus, particularly in low-CAR cells.
- This finding reveals a novel mechanism for adenovirus cell entry, highlighting the plasticity of viral receptor usage.
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