A uniform deleting element mediates the loss of κ genes in human B cells
暂无分享,去创建一个
[1] J. Goverman,et al. Immunoglobulin heavy-chain enhancer requires one or more tissue-specific factors. , 1985, Science.
[2] G. Church,et al. B lineage--specific interactions of an immunoglobulin enhancer with cellular factors in vivo. , 1985, Science.
[3] S. Korsmeyer,et al. Human acute leukemia cell line with the t(4;11) chromosomal rearrangement exhibits B lineage and monocytic characteristics. , 1985, Blood.
[4] S. Korsmeyer,et al. B cell origin of non-T cell acute lymphoblastic leukemia. A model for discrete stages of neoplastic and normal pre-B cell differentiation. , 1984, The Journal of clinical investigation.
[5] E. Selsing,et al. Novel κ light-chain gene rearrangements in mouse λ light chain-producing B lymphocytes , 1984, Nature.
[6] Hans R. Schöler,et al. Specific interaction between enhancer-containing molecules and cellular components , 1984, Cell.
[7] J. Winter,et al. Phenotypic analysis of established diffuse histiocytic lymphoma cell lines utilizing monoclonal antibodies and cytochemical techniques , 1984 .
[8] P. Leder,et al. A conserved sequence in the immunoglobulin Jκ–Cκ intron: possible enhancer element , 1983, Nature.
[9] D. Baltimore,et al. Immunoglobulin gene transcription is activated by downstream sequence elements , 1983, Cell.
[10] T. Waldmann,et al. Immunoglobulin gene rearrangement and cell surface antigen expression in acute lymphocytic leukemias of T cell and B cell precursor origins. , 1983, The Journal of clinical investigation.
[11] F. Alt,et al. Continuing kappa-gene rearrangement in a cell line transformed by Abelson murine leukemia virus , 1982, Cell.
[12] T. Waldmann,et al. Normal human B cells display ordered light chain gene rearrangements and deletions , 1982, The Journal of experimental medicine.
[13] R. Berger,et al. Correlation between immunoglobulin light chain expression and variant translocation in Burkitt's lymphoma , 1982, Nature.
[14] J. Maizel,et al. Evolution of human immunoglobulin kappa J region genes. , 1982, The Journal of biological chemistry.
[15] T. Waldmann,et al. Developmental hierarchy of immunoglobulin gene rearrangements in human leukemic pre-B-cells. , 1981, Proceedings of the National Academy of Sciences of the United States of America.
[16] R. Perry,et al. Aberrant rearrangements contribute significantly to the allelic exclusion of immunoglobulin gene expression , 1981, Nature.
[17] T. Waldmann,et al. Human immunoglobulin κ light-chain genes are deleted or rearranged in λ-producing B cells , 1981, Nature.
[18] F. Alt,et al. Activity of multiple light chain genes in murine myeloma cells producing a single, functional light chain , 1980, Cell.
[19] J. Seidman,et al. A mutant immunoglobulin light chain is formed by aberrant DNA- and RNA-splicing events , 1980, Nature.
[20] M. Kuehl,et al. RNA splicing generates a variant light chain from an aberrantly rearranged κ gene , 1980, Nature.
[21] L. Hood,et al. An immunoglobulin heavy chain variable region gene is generated from three segments of DNA: VH, D and JH , 1980, Cell.
[22] Hitoshi Sakano,et al. Sequences at the somatic recombination sites of immunoglobulin light-chain genes , 1979, Nature.
[23] J. Seidman,et al. Sequences of five potential recombination sites encoded close to an immunoglobulin kappa constant region gene. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[24] G R Stark,et al. Detection of specific RNAs or specific fragments of DNA by fractionation in gels and transfer to diazobenzyloxymethyl paper. , 1979, Methods in enzymology.
[25] J. Seidman,et al. The arrangement and rearrangement of antibody genes , 1978, Nature.
[26] Susumu Tonegawa,et al. A complete immunoglobulin gene is created by somatic recombination , 1978, Cell.
[27] J. Seidman,et al. High capacity gel preparative electrophoresis for purification of fragments of genomic DNA. , 1978, Analytical biochemistry.
[28] F. Sanger,et al. DNA sequencing with chain-terminating inhibitors. , 1977, Proceedings of the National Academy of Sciences of the United States of America.
[29] P Berg,et al. Labeling deoxyribonucleic acid to high specific activity in vitro by nick translation with DNA polymerase I. , 1977, Journal of molecular biology.
[30] D. Hogness,et al. Colony hybridization: a method for the isolation of cloned DNAs that contain a specific gene. , 1975, Proceedings of the National Academy of Sciences of the United States of America.