Related Experiment Video
Updated: Aug 13, 2026

Isolation of Viral Replication Compartment-enriched Sub-nuclear Fractions from Adenovirus-infected Normal Human Cells
Published on: November 12, 2015
Genetic identification of adenovirus type 5 genes that influence viral spread
T Subramanian1, S Vijayalingam, G Chinnadurai
1Institute for Molecular Virology, Saint Louis University School of Medicine, 3681 Park Avenue, St. Louis, MO 63110, USA.
Abstract:
The mechanisms that control cell-to-cell spread of human adenoviruses (Ad) are not well understood. Two early viral proteins, E1B-19K and E3-ADP, appear to have opposing effects since viral mutants that are individually deficient in E1B-19K produce large plaques (G. Chinnadurai, Cell 33:759-766, 1983), while mutants deficient in E3-ADP produce small plaques (A. E. Tollefson et al., J. Virol. 70:2296-2306, 1996) on infected cell monolayers. We have used a genetic strategy to identify different viral genes that influence adenovirus type 5 (Ad5) spread in an epithelial cancer cell line. An Ad5 mutant (dl327; lacking most of the E3 region) with the restricted-spread (small-plaque) phenotype was randomly mutagenized with UV, and 27 large-plaque (lp) mutants were isolated. A combination of analyses of viral proteins and genomic DNA sequences have indicated that 23 mutants contained lesions in the E1B region affecting either 19K or both 19K and 55K proteins. Four other lp mutants contained lesions in early regions E1A and E4, in the early L1 region that codes for the i-leader protein, and in late regions that code for the viral structural proteins, penton base, and fiber. Our results suggest that the requirement of E3-ADP for Ad spread could be readily compensated for by abrogation of the functions of E1B-19K and provide genetic evidence that these two viral proteins influence viral spread in opposing manners. In addition to E1B and E3 proteins, other early and late proteins that regulate viral replication and infectivity also influence lateral viral spread. Our studies have identified novel mutations that could be exploited in designing efficient oncolytic Ad vectors.
Insights
Researchers identified viral genes controlling human adenovirus spread. Mutations in E1B-19K and E3-ADP proteins oppositely affect adenovirus spread, offering insights for oncolytic vector design.
Area of Science:
- * Virology
- * Molecular Biology
- * Cancer Research
Background:
- * Cell-to-cell spread mechanisms of human adenoviruses (Ad) are not fully understood.
- * Early viral proteins E1B-19K and E3-ADP show opposing effects on adenovirus plaque size.
- * E1B-19K deficiency leads to large plaques, while E3-ADP deficiency results in small plaques.
Purpose of the Study:
- * To genetically identify viral genes influencing adenovirus type 5 (Ad5) spread in epithelial cancer cells.
- * To understand the roles of E1B-19K and E3-ADP in viral dissemination.
- * To explore potential applications in designing oncolytic adenovirus vectors.
Main Methods:
- * Utilized a genetic strategy involving random mutagenesis of an Ad5 mutant (dl327) with a restricted-spread phenotype.
- * Isolated and analyzed 27 large-plaque (lp) mutants.
- * Employed analyses of viral proteins and genomic DNA sequences to identify mutations.
Main Results:
- * 23 out of 27 lp mutants had lesions in the E1B region, affecting E1B-19K or both E1B-19K and E1B-55K proteins.
- * Four lp mutants showed lesions in early regions E1A and E4, the L1 region (i-leader protein), and late regions (penton base, fiber).
- * Demonstrated that E3-ADP's role in Ad spread can be compensated by abrogating E1B-19K function.
Conclusions:
- * Provided genetic evidence for opposing roles of E1B-19K and E3-ADP in viral spread.
- * Identified novel mutations influencing Ad spread, including in early and late viral genes.
- * Findings suggest potential for using these mutations in developing efficient oncolytic Ad vectors.
More Related Videos
13:36Utilizing the Antigen Capsid-Incorporation Strategy for the Development of Adenovirus Serotype 5-Vectored Vaccine Approaches
Published on: May 6, 2015
08:14Combined Genetic and Chemical Capsid Modifications of Adenovirus-Based Gene Transfer Vectors for Shielding and Targeting
Published on: October 26, 2018