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Utilizing the Antigen Capsid-Incorporation Strategy for the Development of Adenovirus Serotype 5-Vectored Vaccine Approaches
Published on: May 6, 2015
Two types of functionally distinct fiber containing structural protein complexes are produced during infection of
Bo Zhang1, Yuhua Yan1, Jie Jin1
1Beijing Key Laboratory of Gene Resources and Molecular Development, College of Life Science, Beijing Normal University, Beijing, China.
Abstract:
Adenoviruses are common pathogens. The localization of their receptors coxsackievirus and adenovirus receptor, and desmoglein-2 in cell-cell junction complexes between polarized epithelial cells represents a major challenge for adenovirus infection from the apical surface. Structural proteins including hexon, penton base and fiber are excessively produced in serotype 5 adenovirus (Ad5)-infected cells. We have characterized the composition of structural protein complexes released from Ad5 infected cells and their capacity in remodeling cell-cell junction complexes. Using T84 cells as a model for polarized epithelium, we have studied the effect of Ad5 structural protein complexes in remodeling cell-cell junctions in polarized epithelium. The initial Ad5 infection in T84 cell culture was inefficient. However, progressive distortion of cell-cell junction in association with fiber release was evident during progression of Ad5 infection. Incubation of T84 cell cultures with virion-free supernatant from Ad5 infected culture resulted in distortion of cell-cell junctions and decreased infectivity of Ad5-GFP vector. We used gel filtration chromatography to fractionate fiber containing virion-free supernatant from Ad5 infected culture supernatant. Fiber containing fractions were further characterized for their capacity to inhibit the infection of Ad5-GFP vector, their composition in adenovirus structural proteins using western blot and LC-MS/MS and their capacity in remolding cell-cell junctions. Fiber molecules in complexes containing penton base and hexon, or mainly hexon were identified. Only the fiber complexes with relatively high content of penton base, but not the fiber-hexon complexes with low penton base, were able to penetrate into T84 cells and cause distortion of cell-cell junctions. Our findings suggest that these two types of fiber complexes may play different roles in adenoviral infection.
Insights
Adenovirus fiber proteins remodel cell junctions in polarized epithelial cells. Complexes with high penton base content, but not hexon-rich ones, distort cell junctions and reduce infectivity.
Area of Science:
- Virology
- Cell Biology
- Epithelial Biology
Background:
- Adenoviruses are common pathogens that infect polarized epithelial cells.
- Adenovirus receptors (CAR and DSG2) are located in cell-cell junctions, posing a challenge for apical entry.
- Structural proteins like hexon, penton base, and fiber are overproduced during adenovirus type 5 (Ad5) infection.
Purpose of the Study:
- To characterize Ad5 structural protein complexes released from infected cells.
- To investigate the capacity of these complexes to remodel cell-cell junctions in polarized epithelium.
- To determine the role of different fiber complexes in Ad5 infection and junction remodeling.
Main Methods:
- T84 cells were used as a model for polarized epithelium.
- Virion-free supernatant from Ad5-infected cells was incubated with T84 cultures.
- Gel filtration chromatography, western blot, and LC-MS/MS were used to analyze fiber complexes.
- Infectivity assays with Ad5-GFP vector were performed.
Main Results:
- Initial Ad5 infection of T84 cells was inefficient, but infection progressed with junction distortion and fiber release.
- Supernatant from infected cells distorted cell-cell junctions and decreased Ad5-GFP vector infectivity.
- Fiber complexes containing penton base and hexon, or mainly hexon, were identified.
- Fiber complexes with high penton base content, but not hexon-rich ones, penetrated T84 cells and distorted cell junctions.
Conclusions:
- Ad5 structural protein complexes, particularly those rich in penton base, can remodel cell-cell junctions in polarized epithelia.
- These complexes may play distinct roles in adenoviral infection pathways.
- The interaction of fiber complexes with cell junctions impacts viral entry and spread.
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