Establishment of mouse cell lines which constitutively secrete large quantities of interleukin 2, 3, 4 or 5, using modified cDNA expression vectors
- 1 January 1988
- journal article
- research article
- Published by Wiley in European Journal of Immunology
- Vol. 18 (1) , 97-104
- https://doi.org/10.1002/eji.1830180115
Abstract
Mouse cell lines of different lineages have been established which constitutively secrete large quantities of recombinant mouse interleukins (mIL2, mIL3, mIL4 or mIL5). An existing bovine papilloma virus‐based expression vector, pBV‐lMTHA, was modified to allow transformed X63Ag8‐653 myeloma cells, NIH 3T3 fibroblasts and C127 mammary tumor cells to stably carry multiple copies of the vector, to express the inserted cDNA encoding a single interleukin constitutively, and to secrete the interleukin in high quantities.Cell lines transformed with mIL2 cDNA stably carried 30–100 copies of the plasmid per cell and constitutively secreted biologically active mIL2 in quantities similar to those produced by murine EL4 thymoma cells or rat spleen cells stimulated with mitogens. Deletion of the 3′ untranslated region containing AT‐rich sequences from the mIL2 cDNA resulted in a 100‐fold increase in the constitutive production and secretion of mIL2 by the transformants. Addition of a heavy metal further increased the production 2 to 6‐fold. Cells transformed with 3′‐deleted mIL3 cDNA constitutively secreted 300–1000 times higher activities of mIL3 than the myelomonocytic leukemia line WEHI 3. mIL 4 produced by the similar transformants induced [3H]thymidine uptake of a T cell line, a mast cell line and B leukemia cells, and enhanced the production of IgG1 by B cells. IL 4 liters were 150 times higher than those produced by the concanavalin A‐stimulated T cell line 2.19. mIL 5 was secreted by similar transformants at 10‐fold higher titers than those produced by concanavalin A‐stimulated 2.19 T cells, as judged by the proliferation and maturation of B cell leukemia BCL1. The expression vectors should be useful in establishing eukaryotic cell lines producing proteins from full length cDNA clones at higher rates. The established cell lines secreting IL2, 3, 4 or 5 at high rate should be useful sources for these interleukins in the investigation of their function in the immune system.This publication has 53 references indexed in Scilit:
- Expression of a hemopoietic growth factor cDNA in a factor-dependent cell line results in autonomous growth and tumorigenicityCell, 1985
- Human GM-CSF: Molecular Cloning of the Complementary DNA and Purification of the Natural and Recombinant ProteinsScience, 1985
- Cloning and expression of murine interleukin-1 cDNA in Escherichia coliNature, 1984
- Molecular cloning of cDNA encoding a murine haematopoietic growth regulator, granulocyte—macrophage colony stimulating factorNature, 1984
- Molecular cloning of cDNA for murine interleukin-3Nature, 1984
- Regulation of B-Cell Growth and Differentiation by Soluble FactorsAnnual Review of Immunology, 1983
- Transfer of a cloned immunoglobulin light-chain gene to mutant hybridoma cells restores specific antibody productionNature, 1983
- A new dominant hybrid selective marker for higher eukaryotic cellsJournal of Molecular Biology, 1981
- Synthesis in E. coli of a polypeptide with human leukocyte interferon activityNature, 1980
- A plaque assay for all cells secreting Ig of a given type or classEuropean Journal of Immunology, 1976