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.

Journal of Virology
|January 28, 2006
PubMed

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.

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