Construction and use of a dominant, selectable marker: a Harvey sarcoma virus-dihydrofolate reductase chimera.
Open Access
- 1 January 1983
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 3 (1) , 32-43
- https://doi.org/10.1128/mcb.3.1.32
Abstract
The transcriptional promoter of the Harvey sarcoma virus long terminal repeat has been used to construct a biologically active dihydrofolate reductase chimera. The construction placed the long terminal repeat at the 5' end of a dihydrofolate reductase cDNA. This chimera mediated methotrexate resistance when introduced into wild-type NIH3T3 mouse cells by transfection. The chimeric sequences were expressed in the form of polyadenylated RNA and dihydrofolate reductase protein and were amplified when the methotrexate-resistant transfectants were selected to grow in increasing methotrexate concentrations. This chimera was dominant acting and able to confer a methotrexate-resistant phenotype on wild-type NIH3T3 cells. It has been used in cotransfection experiments with DNA from human tumor cells to obtain foci of methotrexate-resistant transformed NIH3T3 cells resulting from uptake of exogenous DNA. The transfected methotrexate-resistant cells carried double minute chromosomes that appeared to contain DNA acquired during transfection.This publication has 51 references indexed in Scilit:
- Detection of specific sequences among DNA fragments separated by gel electrophoresisPublished by Elsevier ,2006
- Three different human tumor cell lines contain different oncogenesCell, 1981
- Retroviruses as mutagens: Insertion and excision of a nontransforming provirus alter expression of a resident transforming provirusCell, 1981
- Structure and genomic organization of the mouse dihydrofolate reductase geneCell, 1980
- Rapid isolation of metaphase chromosomes containing high molecular weight DNA.The Journal of cell biology, 1979
- A defined subgenomic fragment of in vitro synthesized Moloney sarcoma virus DNA can induce cell transformation upon transfectionCell, 1979
- Biochemical transfer of single-copy eucaryotic genes using total cellular DNA as donorCell, 1978
- Labeling deoxyribonucleic acid to high specific activity in vitro by nick translation with DNA polymerase IJournal of Molecular Biology, 1977
- RNA metabolism of murine leukemia virus: Detection of virus-specific RNA sequences in infected and uninfected cells and identification of virus-specific messenger RNAJournal of Molecular Biology, 1973
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970