v-myc and v-raf act synergistically to induce B-cell tumors in pristane-primed adult BALBC mice. 1990

J M Kurie, and H C Morse, and M A Principato, and J S Wax, and J Troppmair, and U R Rapp, and M Potter, and J F Mushinski
Laboratory of Genetics, National Cancer Institute, Bethesda, Maryland 20892.

In a variety of systems, evidence is accumulating which suggests that neoplastic transformation requires the action of two or more genes such as mutated or over-expressed proto-oncogenes. To determine whether the cytoplasmic serine/threonine kinase oncogene raf could complement a deregulated myc gene and induce tumors in adult mice, BALBC mice were primed with an intraperitoneal (ip.) injection of mineral oil (pristane) and then given an ip. injection of a retroviral construct, J1, J2 or J5, which expresses either v-raf (J1), v-myc (J5) or both (J2). The J1 virus induced no tumors in 150 days in 38 mice, except for 5 helper virus-associated T-cell lymphomas. Under identical conditions the J5 virus, which expresses only v-myc, induced exclusively monocytic neoplasms in 93% of 15 mice. The J2 virus expresses both v-myc and v-raf and caused equal numbers of monocytic and B cell tumors in 66% of 30 mice. Under these conditions, it appears that v-raf expression acts synergistically with v-myc to induce the transformation of B cells, which neither oncogene could do alone. The J3 virus, which originally contained a complete v-myc and an inactivated v-raf, can induce tumors of later stage B cells (plasmacytomas, Potter et al., 1987). Recent studies of virus recovered from these plasmacytomas (called the J3V1 virus, Troppmair et al., 1989) show that the J3 virus has undergone deletions which have reactivated v-raf in a mutated form. Only J3V1, not J3, induced tumors in vivo. Our data presented here corroborate Troppmair et al. and extend Potter et al. (1987) which reported that J3 (presumably J3V1) induced 10% myeloid tumors and 90% plasmacytomas. In light of the discovery, our J2 and J3 data indicate that in combination with the same form of v-myc, different forms of v-raf induce different spectra of tumors.

UI MeSH Term Description Entries
D008223 Lymphoma A general term for various neoplastic diseases of the lymphoid tissue. Germinoblastoma,Lymphoma, Malignant,Reticulolymphosarcoma,Sarcoma, Germinoblastic,Germinoblastic Sarcoma,Germinoblastic Sarcomas,Germinoblastomas,Lymphomas,Lymphomas, Malignant,Malignant Lymphoma,Malignant Lymphomas,Reticulolymphosarcomas,Sarcomas, Germinoblastic
D008807 Mice, Inbred BALB C An inbred strain of mouse that is widely used in IMMUNOLOGY studies and cancer research. BALB C Mice, Inbred,BALB C Mouse, Inbred,Inbred BALB C Mice,Inbred BALB C Mouse,Mice, BALB C,Mouse, BALB C,Mouse, Inbred BALB C,BALB C Mice,BALB C Mouse
D009154 Mutation Any detectable and heritable change in the genetic material that causes a change in the GENOTYPE and which is transmitted to daughter cells and to succeeding generations. Mutations
D009857 Oncogenes Genes whose gain-of-function alterations lead to NEOPLASTIC CELL TRANSFORMATION. They include, for example, genes for activators or stimulators of CELL PROLIFERATION such as growth factors, growth factor receptors, protein kinases, signal transducers, nuclear phosphoproteins, and transcription factors. A prefix of "v-" before oncogene symbols indicates oncogenes captured and transmitted by RETROVIRUSES; the prefix "c-" before the gene symbol of an oncogene indicates it is the cellular homolog (PROTO-ONCOGENES) of a v-oncogene. Transforming Genes,Oncogene,Transforming Gene,Gene, Transforming,Genes, Transforming
D011505 Protein-Tyrosine Kinases Protein kinases that catalyze the PHOSPHORYLATION of TYROSINE residues in proteins with ATP or other nucleotides as phosphate donors. Tyrosine Protein Kinase,Tyrosine-Specific Protein Kinase,Protein-Tyrosine Kinase,Tyrosine Kinase,Tyrosine Protein Kinases,Tyrosine-Specific Protein Kinases,Tyrosylprotein Kinase,Kinase, Protein-Tyrosine,Kinase, Tyrosine,Kinase, Tyrosine Protein,Kinase, Tyrosine-Specific Protein,Kinase, Tyrosylprotein,Kinases, Protein-Tyrosine,Kinases, Tyrosine Protein,Kinases, Tyrosine-Specific Protein,Protein Kinase, Tyrosine-Specific,Protein Kinases, Tyrosine,Protein Kinases, Tyrosine-Specific,Protein Tyrosine Kinase,Protein Tyrosine Kinases,Tyrosine Specific Protein Kinase,Tyrosine Specific Protein Kinases
D011519 Proto-Oncogenes Normal cellular genes homologous to viral oncogenes. The products of proto-oncogenes are important regulators of biological processes and appear to be involved in the events that serve to maintain the ordered procession through the cell cycle. Proto-oncogenes have names of the form c-onc. Proto-Oncogene,Proto Oncogene,Proto Oncogenes
D002273 Carcinogens Substances that increase the risk of NEOPLASMS in humans or animals. Both genotoxic chemicals, which affect DNA directly, and nongenotoxic chemicals, which induce neoplasms by other mechanism, are included. Carcinogen,Oncogen,Oncogens,Tumor Initiator,Tumor Initiators,Tumor Promoter,Tumor Promoters,Initiator, Tumor,Initiators, Tumor,Promoter, Tumor,Promoters, Tumor
D002471 Cell Transformation, Neoplastic Cell changes manifested by escape from control mechanisms, increased growth potential, alterations in the cell surface, karyotypic abnormalities, morphological and biochemical deviations from the norm, and other attributes conferring the ability to invade, metastasize, and kill. Neoplastic Transformation, Cell,Neoplastic Cell Transformation,Transformation, Neoplastic Cell,Tumorigenic Transformation,Cell Neoplastic Transformation,Cell Neoplastic Transformations,Cell Transformations, Neoplastic,Neoplastic Cell Transformations,Neoplastic Transformations, Cell,Transformation, Cell Neoplastic,Transformation, Tumorigenic,Transformations, Cell Neoplastic,Transformations, Neoplastic Cell,Transformations, Tumorigenic,Tumorigenic Transformations
D004273 DNA, Neoplasm DNA present in neoplastic tissue. Neoplasm DNA
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia

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