Relationship between the rearrangement of immunoglobulin genes, the appearance of a B lymphocyte antigen, and immunoglobulin synthesis in murine pre-B cell lines.
Open Access
- 1 June 1982
- journal article
- research article
- Published by Oxford University Press (OUP) in The Journal of Immunology
- Vol. 128 (6) , 2793-2797
- https://doi.org/10.4049/jimmunol.128.6.2793
Abstract
Eighteen Abelson virus-transformed immature B cell lines were established and immunoglobulin biosynthesis, expression of a B lymphocyte antigen detected by a monoclonal antibody, and rearrangement of immunoglobulin genes in these cell lines were studied. Only one cell line (A1) synthesized micro-chains but no light chains, and the other cell lines synthesized no detectable immunoglobulins. None of the cell lines established had detectable membrane-associated IgM. Fifteen cell lines expressed a B lymphocyte antigen on their cell surfaces. In three cell lines, however, the majority (greater than 99%) of cells did not express this antigen. Heavy chain genes were rearranged on both chromosomes in all the cell lines, although one heavy chain gene was deleted in three cell lines. In 12 of 18 cell lines, one or both kappa-chain genes were rearranged. In six cell lines, however, both kappa-chain genes remained in embryonic form; lambda-chain genes were in embryonic form in all the cell lines. These results suggested the hierarchy of Ig gene rearrangements, beginning with mu and proceeding to kappa and then to lambda. JH rearrangement was also shown to precede the appearance of a B lymphocyte antigen. In three cell lines (A1-A3), which were considered subclones derived from a single common precursor, it was suggested that one rearranged JH gene was functional, and the other was nonfunctional, indicating that allelic exclusion already operated in pre-B cells.This publication has 13 references indexed in Scilit:
- Aberrant rearrangements contribute significantly to the allelic exclusion of immunoglobulin gene expressionNature, 1981
- A monoclonal antibody that recognizes B cells and B cell precursors in mice.The Journal of Experimental Medicine, 1981
- Cmu gene rearrangement of mouse immunoglobulin genes in normal B cells occurs on both the expressed and nonexpressed chromosomes.Proceedings of the National Academy of Sciences, 1981
- Induction and regulation of immunoglobulin expression in a murine pre-B cell line, 70Z/3. I. Cell cycle-associated induction of sIgM expression and kappa-chain synthesis in 70Z/3 cells by LPS stimulation.The Journal of Immunology, 1980
- Deletion of immunoglobulin heavy chain genes from expressed allelic chromosomeNature, 1980
- Activity of multiple light chain genes in murine myeloma cells producing a single, functional light chainCell, 1980
- Murine B Cell Leukemia Line with Inducible Surface Immunoglobulin ExpressionThe Journal of Immunology, 1978
- Synthesis, surface deposition, and secretion of immunoglobulins by abelson virus-transformed lymphosarcoma cell linesCell, 1975
- RABBIT LYMPHOID CELLS DIFFERENTIATED WITH RESPECT TO α-, γ-, AND µ- HEAVY POLYPEPTIDE CHAINS AND TO ALLOTYPIC MARKERS AA1 AND AA2The Journal of Experimental Medicine, 1966
- CELLULAR LOCALIZATION OF IMMUNOGLOBULINS WITH DIFFERENT ALLOTYPIC SPECIFICITIES IN RABBIT LYMPHOID TISSUESThe Journal of Experimental Medicine, 1965