Adenovirus Vectors with the 100K Gene Deleted and Their Potential for Multiple Gene Therapy Applications
Open Access
- 1 July 2001
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 75 (13) , 5913-5920
- https://doi.org/10.1128/jvi.75.13.5913-5920.2001
Abstract
The 100K protein has a number of critical roles vital for successful completion of the late phases of the adenovirus (Ad) life cycle. We hypothesized that the introduction of deletions within the 100K gene would allow for the production of a series of new classes of Ad vector, including one that is replication competent but blocked in the ability to carry out many late-phase Ad functions. Such a vector would have potential for several gene therapy applications, based upon its ability to increase the copy number of the transgene encoded by the vector (via genome replication) while decreasing the side effects associated with Ad late gene expression. To efficiently produce 100K-deleted Ad ([100K−]Ad) vectors, an E1- and 100K-complementing cell line (K-16) was successfully isolated. Transfection of an [E1−,100K−]Ad vector genome into the K-16 cells readily yielded high titers of the vector. After infection of noncomplementing cells, we demonstrated that [100K−]Ad vectors have a significantly decreased ability to express several Ad late genes. Additionally, if the E1 gene was present in the infected noncomplementing cells, [100K−]Ad vectors were capable of replicating their genomes to high copy number, but were significantly blocked in their ability to efficiently encapsidate the replicated genomes. Injection of an [E1−,100K−]Ad vector in vivo also correlated with significantly decreased hepatotoxicity, as well as prolonged vector persistence. In summary, the unique properties of [100K−]Ad vectors suggest that they may have utility in a variety of gene therapy applications.Keywords
This publication has 14 references indexed in Scilit:
- Long-Term Efficacy after [E1-, polymerase-] Adenovirus-Mediated Transfer of Human Acid-α-Glucosidase Gene into Glycogen Storage Disease Type II Knockout MiceHuman Gene Therapy, 2001
- DNA Replication of First-Generation Adenovirus Vectors in Tumor CellsHuman Gene Therapy, 2000
- Protease-Deleted Adenovirus Vectors and Complementing Cell Lines: Potential Applications of Single-Round Replication Mutants for Vaccination and Gene TherapyHuman Gene Therapy, 2000
- Persistence of an [E1-, Polymerase-] Adenovirus Vector Despite Transduction of a Neoantigen into Immune-Competent MiceHuman Gene Therapy, 1999
- Persistent transgene expression in mouse liver following in vivo gene transfer with a ΔE1/ΔE4 adenovirus vectorGene Therapy, 1997
- An Adenovirus Mutant That Replicates Selectively in p53- Deficient Human Tumor CellsScience, 1996
- Hexon trimerization occurring in an assembly-defective, 100k temperature-sensitive mutant of adenovirus 2Virology, 1986
- Adenovirus AssemblyPublished by Springer Nature ,1984
- Analysis of Ad5 Hexon and 100K is mutants using conformation-specific monoclonal antibodiesVirology, 1983
- DNA replication and the early to late transition in adenovirus infectionCell, 1980