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Oncolytic herpes virus with defective ICP6 specifically replicates in quiescent cells with homozygous genetic mutations in p16

Oncolytic herpes virus with defective ICP6 specifically replicates in quiescent cells with homozygous genetic mutations in p16
Oncolytic herpes simplex viruses (HSVs), in clinical trials for the treatment of malignant gliomas, are assumed to be selective for tumor cells because their replication is strongly attenuated in quiescent cells, but not in cycling cells. Oncolytic selectivity is thought to occur because mutations in viral ICP6 (encoding a viral ribonucleotide reductase function) and/or gamma34.5 function are respectively complemented by mammalian ribonucleotide reductase and GADD34, whose genes are expressed in cycling cells. However, it is estimated that only 5-15% of malignant glioma cells are in mitosis at any one time. Therefore, effective replication of HSV oncolytic viruses might be limited to a subpopulation of tumor cells, since at any one time the majority of tumor cells would not be cycling. However, we report that an HSV with defective ICP6 function replicates in quiescent cultured murine embryonic fibroblasts obtained from mice with homozygous p16 deletions. Furthermore, intracranial inoculation of this virus into the brains of p16-/- mice provides evidence of viral replication that does not occur when the virus is injected into the brains of wild-type mice. These approaches provide in vitro and in vivo evidence that ICP6-negative HSVs are 'molecularly targeted,' because they replicate in quiescent tumor cells carrying specific oncogene deletions, independent of cell cycle status.
- Harvard University United States
- Massachusetts General Hospital United States
- The Ohio State University United States
- Dana-Farber Cancer Institute United States
- The Ohio State University at Marion United States
p16, Virus Replication, Mice, glioma, 2.1 Biological and endogenous factors, Simplexvirus, Cells, Cultured, Cancer, Mice, Knockout, Oncolytic Virotherapy, Cultured, Brain Neoplasms, Cell Cycle, Homozygote, Gene Therapy, Glioma, Biological Sciences, gene therapy, Oncolytic Viruses, mechanism of replication, brain tumor, Biotechnology, 570, Cells, Knockout, Immunology, Clinical Sciences, Oncology and Carcinogenesis, 610, Article, Viral Proteins, Rare Diseases, tumor-suppressor gene, Genetics, Animals, Humans, Oncology & Carcinogenesis, oncolytic virus, Biomedical and Clinical Sciences, Genes, p16, Neurosciences, Oncology and carcinogenesis, Brain Disorders, Brain Cancer, Genes, Biochemistry and cell biology, Mutation
p16, Virus Replication, Mice, glioma, 2.1 Biological and endogenous factors, Simplexvirus, Cells, Cultured, Cancer, Mice, Knockout, Oncolytic Virotherapy, Cultured, Brain Neoplasms, Cell Cycle, Homozygote, Gene Therapy, Glioma, Biological Sciences, gene therapy, Oncolytic Viruses, mechanism of replication, brain tumor, Biotechnology, 570, Cells, Knockout, Immunology, Clinical Sciences, Oncology and Carcinogenesis, 610, Article, Viral Proteins, Rare Diseases, tumor-suppressor gene, Genetics, Animals, Humans, Oncology & Carcinogenesis, oncolytic virus, Biomedical and Clinical Sciences, Genes, p16, Neurosciences, Oncology and carcinogenesis, Brain Disorders, Brain Cancer, Genes, Biochemistry and cell biology, Mutation
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