Transposon-Assisted Cloning and Traceless Mutagenesis of Adenoviruses: Development of a Novel Vector Based on SpeciesD
- 15 August 2006
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 80 (16) , 8100-8113
- https://doi.org/10.1128/jvi.00687-06
Abstract
Until recently, adenovirus (Ad)-mediated gene therapy was almost exclusively based on human Ad type 5 (Ad5). Preexisting immunity and the limited, coxsackievirus and adenovirus receptor-dependent tropism of Ad5 stimulated attempts to exploit the natural diversity in tropism of the other 50 known human Ad serotypes. Aiming in particular at immunotherapy and vaccination, we have screened representative serotypes from different Ad species for their ability to infect dendritic cells. Ad19a, an Ad from species D, was selected for development as a new vector for vaccination and cancer gene therapy. To clone and manipulate its genome, we have developed a novel methodology, coined "exposon mutagenesis," that allows the rapid and precise introduction of virtually any genetic alteration (deletions, point mutations, or insertions) into recombinant Ad bacterial artificial chromosomes. The versatility of the system was exemplified by deleting the E3 region of Ad19a, by specifically knocking out expression of a species-specific E3 gene, E3/49K, and by reinserting E3/49K into an E3 null Ad19a mutant. The technology requires only limited sequence information and is applicable to other Ad species. Therefore, it should be extremely valuable for the analysis of gene functions from any Ad species. In addition, a basic, replication-defective E1- and E3-deleted Ad19a vector expressing GFP (Ad19aGFP) was generated. This new vector based on species D Ads exhibits a very promising tropism for lymphoid and muscle cells and shows great potential as an alternative vector for transduction of cell types that are resistant to or only poorly transduced by conventional Ad5-based vectors.Keywords
This publication has 89 references indexed in Scilit:
- Adenovirus Vectors Based on Human Adenovirus Type 19a Have High Potential for Human Muscle-Directed Gene TherapyHuman Gene Therapy, 2006
- Adenovirus ReceptorsJournal of Virology, 2005
- Characterization and manipulation of the human adenovirus 4 genomeJournal of General Virology, 2004
- Membrane Cofactor Protein Is a Receptor for Adenoviruses Associated with Epidemic KeratoconjunctivitisJournal of Virology, 2004
- Human adenovirus type 35: nucleotide sequence and vector developmentGene Therapy, 2003
- Replication-Deficient Human Adenovirus Type 35 Vectors for Gene Transfer and Vaccination: Efficient Human Cell Infection and Bypass of Preexisting Adenovirus ImmunityJournal of Virology, 2003
- Rapid Construction of Adenoviral Vectors by Lambda Phage GeneticsJournal of Virology, 2002
- Characterization of E3/49K, a Novel, Highly Glycosylated E3 Protein of the Epidemic Keratoconjunctivitis-Causing Adenovirus Type 19aJournal of Virology, 2002
- Initial Interactions of Subgenus D Adenoviruses with A549 Cellular Receptors: Sialic Acid versus α v IntegrinsJournal of Virology, 2000
- Mouse adenovirus (MAV-1) expression in primary human endothelial cells and generation of a full-length infectious plasmidGene Therapy, 1999