Establishment and characterization of BALB/c lymphoma lines with B cell properties.
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Biomedical subjects
Publications and source records attributed to R Asofsky.
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Spontaneous lymphomas of BALB/c mice, both in vivo tumors and cell lines established in long term tissue cultures, were investigated for their ability to synthesize IgM by using radiolabeled amino acid precursors. Immunoglobulins manufactured by lymphomas K46 and L10A had the m.w. of monomeric IgM and IgM half molecule. Both of these molecules could be immunoprecipitated with class-specific anti-IgM but not anti-IgA or anti-IgG. When precipitated with polyvalent anti-Ig L10A synthesized monomeric immunoglobulins that migrated as two peaks in contrast to their single counterpart precipitated with anti-IgM. The second peak migrated in the region expected for IgD. Monomer and half molecules were composed of similar ratios of mu-chains to light chains linked by disulfide bonds. The mu2L2 monomer of these B cell lines migrated slightly slower in SDS PAGE than a mu2L2 secreted by a myeloma. Thus, these lymphomas synthesize immunoglobulins with the chemical and antigenic characteristics typical of monomeric membrane-attached IgM and IgM half molecules, plus a molecule resembling IgD on L10A only. Lymphoma assembly of monomeric IgM may follow the same initial biosynthetic sequence as myeloma assembly.
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Mouse spleen cells can be stimulated to proliferate in vitro by purified anti-mu or anti-gamma,kappa antibodies. These responses can be obtained in cell populations bearing membrane immunoglobulin (Ig), purified by the fluorescence activated cell sorter (FACS), but they are not observed in FACS-purified Ig- cell populations. Furthermore, treatment of spleen cell populations with anti-Thy 1.2 and complement does not impair the response, nor does addition of nylon wool-purified T lymphocytes enhance it. These results indicate that B lymphocytes respond to anti-Ig and that their response does not require T cells. On the other hand, cells from athymic nude (nu/nu) mice respond slightly less well to anti-mu than do cells from heterozygous littermate (nu/+) controls; nu/nu cells are almost unresponsive to anti-gamm,kappa and addition of nylon wool-purified T cells from nu/+ controls does not restore the response. This suggests that T lymphocytes or the thymus may control the appearance of cells responsive to anti-gamma,kappa. Responsiveness of normal mice to anti-mu does not appear until 4 wk of age and does not reach maximum levels until 8 wk of age. Acquisition of full responsiveness to anti-gamma,kappa is even more delayed. This, together with the failure of mice with the CBA/N B-cell defect to respond to anti-Ig, suggests that cells stimulated to proliferate by anti-Ig are a mature subset of B cells. Depletion of adherent cells by Sephadex G-10 treatment or by treatment with carbonyl iron and exposure to a magnetic field does not diminish anti-mu or anti-gamma,kappa responses, suggesting that the responsiveness does not require the presence of macrophages. Thus, activation of B-cell proliferation by anti-Ig appears to be a T-cell independent, macrophage-independent process in which membrane Ig plays a direct role in signal generation.
Transplanted lymphomas, most of thymic origin, induced in BALB/c mice with 1-ethyl-1-nitrosourea (ENU) and transplanted spontaneously occurring lymphomas of AKR mice were examined for the expression of the T-cell antigens Ly, TL, and Thy 1 by using three serological methods. Most (11 of 13) of the Thy 1+ and/or TL+ tumors, i.e., T-cell tumors, expressed high levels of either Ly 1 or Ly 2 antigen, but not both. Thus most thymic lymphocytic tumors expressed restricted Ly phenotypes comparable to phenotypes previously described for functional peripheral T cells. Because tumor phenotypes were stable over a number of transplant generations, they therefore appeared to be an intrinsic property of the specific tumors. The majority of the BALB/c lymphomas were Ly 1- 2+ and also positive with anti-TL antiserum. This predominant phenotype on the BALB/c tumors may be related to either the mode of tumor induction or to the mouse strain, but since the restricted Ly pattern was observed both in BALB/c and AKR tumors, the phenotypic restriction itself is not a consequence of either of these factors. Tumor induction by ENU per se is not responsible for Ly or TL ,ntigen expression since several non-T-cell BALB/ c tumors, also induced by ENU, did not express either Ly or TL antigens. Data presented here suggest that the target cell for leukemogenesis may be a partially differentiated thymus cell. The restricted expression of Ly antigens on differentiating thymus cells to either the (formula: see text), phenotype may occur before the loss of TL antigen.
Spleen cell cultures from young adult mice of a variety of strains were stimulated to incorporate tritiated thymidine ([3H]TdR) by a goat anti-mouse IgM antiserum and by purified anti-mu antibodies prepared from this serum. This stimulation was shown to depend upon the anti-mu activity of the antiserum. In addition, ultracentrifuged anti-mu and F(ab')2 fragments of anti-mu were shown to be stimulatory. The anti-mu preparation lacked detectable endotoxin contamination and was also shown to stimulate response by two strains (C57BL/10ScCr and C3H/HeJ) which are unresponsive to the mitogenic effects of endotoxin, while it failed to stimulate a response by cells from a mouse strain (CBA/N) which responds to endotoxin. In addition purified goat anti-mouse gamma, kappa antibodies and rabbit anti-mouse kappa-antib odies stimulated uptake of [3H]TdR by mouse spleen cells, although to a lesser degree than the anti-mu preparation. The cell density, culture requirements, and kinetics of the response are presented.
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Previously, 10 BALB/c T cell lines (Thy 1.2+, Ig-) were shown to express different combinations of Ly 1 and Ly 2 antigens. The possible immunologic function(s) of these tumor cells was determined by investigating the effects of these cells on the responses to mitogens, the mixed lymphocyte response (MLR), and the generation of cell-mediated lysis (CML) by normal spleen cells. Five T cell lines, P1798 and BALENTL 3, 5, 8, and 9, continued to synthesize DNA after exposure to large doses of irradiation. Only BALENTL 4, 6, 7, and 14 (Ly 1-(2+)) and BALENTL 13 (Ly 1+(2-)) were radiosensitive and therefore amenable to study. BALENTL 4 and 14 gave significant suppression of the MLR between BALB/c and C57BL/6; BALENTL 14 also inhibited the generation of BALB/c effector cells against C57BL/6 spleen cells. None of these T cell lines had any effect on the proliferative response of BALB/c spleen cells induced by concanavalin A. However, there was approximately 50% suppression of the phytohemagglutinin response of BALB/c spleen cells by BALENTL 14.
Transplanted lymphomas (Thy 1.2+, Ig-) of BALB/c mice, induced by the injection of 1-ethyl-1-nitrosourea, were adapted for growth as in vitro lines to provide potential tools for investigation of T lymphocyte differentiation and functions. All these tissue culture lines maintained the same pattern of surface differentiation antigens (Ly, TL, and Thy-1 antigens) as they had expressed during in vivo passages: BALENTL 13 was Thy 1.2+, TL.2-, and Ly 1+2-. BALENTL 3, 4, 5, 6, 7, 8, and 14 were Thy 1.2+, TL.2+, and Ly 1-2+. P1798 and BALENTL 9 were Thy 1.2+, TL.2+, and Ly 1-2+. There were various levels of terminal transferase activity present among these T cell tumor lines. The range of variation was from 4.6 units/10(8) cells to 29.3 units/10(8) cells (normal thymocytes, 5.0 units/10(8) cells). This 6-fold variation in TdT activity was present even among those cell lines which were Ly 1-2+, TL+. Most cultures lines had chromosome numbers near 40 and generation times of 11 to 22 hr. There were no significant morphologic changes after the adaptation of these tumors in culture except an increase in cytoplasmic C-type virus particles.
Plasmacytomas were readily induced in NZB mice by three i.p. inoculations with pristane (2, 6, 10, 14-tetramethylpentadecane). In comparison with comparable induction regimens in BALB/c mice a) the latent period for plasmacytoma development was significantly longer in NZB's; b) the frequency of IgA paraproteins produced by NZB tumors was much reduced and that of IgG (IgG1, IgG2a, IgG2b, IgG3Y was significantly increased; and c) the frequency of carbohydrate-binding paraproteins was 10-fold lower. There was a high frequency of primary ascites containing more than one paraprotein, but none of 25 such tumors produced more than one immunoglobulin class on serial transplantation.
After active immunization with 2,4-dinitrophenyl-keyhole limpet hemocyanin (DNP-KLH), 2,4-dinitropheynl-L-lysine (DNPL)-Ficoll may elicit indurated, erythematous skin reactions lasting 24-72 h. Histological sections of these reactions, examined by microscope techniques, showed they contained polymorphonuclear leukocytes and perivascularly situated lymphocytes and macrophages, but had very few basophils. Consequently, the reaction was interpreted as having an immediate component and a component typical of delayed hypersensitivity; this indicated that the delayed reaction could be specific for the DNP hapten. Although this delayed type of skin reaction was not transferred to recipients with anti-DNP-KLH serum, one pool of that serum did sensitize guinea pigs so that they could respond with a different skin reaction after challenge with DNPL-Ficoll. This reaction was soft, pale pink, and lasted for 24 h. Histologically, it contained only a few polymorphonuclear leukocytes. It differed from the delayed reaction in actively immunized animals in that it lacked induration, and was devoid of lymphocytes and macrophages.
Evidence from various systems suggests that thymus-derived lymphocytes can affect the quality of antibody responses by recognizing various portions of the immunoglobulin receptor of bone-marrow-derived thymus-independent lymphocytes. A model for this process is proposed involving two antigen-specific mature T helper cells, one of which also is specific for immunoglobulin determinants. These two cells act synergistically. Evidence from adoptive secondary antibody responses demonstrates that both cells are antigen-specific T cells and that the immunoglobulin-recognizing T helper cell is absent from experimentally agammaglobulinemic mice. This cell is termed an "immunoglobulin-dependent T cell" because its activation requires the presence of immunoglobulin.
Spleen cells from normal BALB/c mice or mice immunized 10 or 30 days previously with C57BL/6 spleen cells were tested for a) their capacity to produce graft-vs-host (GVH) reactions in newborn F1 mice and b) their capacity to produce an allogeneic effect in adult F1 mice immunized with Type III pneumococcal polysaccharide. GVH reactivity of alloimmune spleen cells obtained 10 or 30 days after immunization was significantly increased as compared to the reactivity of normal spleen cells in that a) at comparable cell doses, higher spleen indices were obtained with alloimmune cells than normal cells, and b) alloimmune cells produced severe runting at lower cell doses than normal cells. By comparison, the capacity of alloimmune spleen cells to produce an allogeneic effect was reduced 50% on a per cell basis as compared to normal spleen cells at both 10 and 30 days after immunization. These results give further evidence that T cells producing the allogeneic effect are distinct from the T cell populations which interact to produce GVH splenomegaly.
Guiena pigs were immunized with dinitrophenyl-keyhole limpet hemocyanin (DNP-KLH) or with hemocyanin in complete Freud's adjevant. The migration of oil-induced peritoneal exudate cells was measured in the presence and absence of epsilon-dinitrophenyl-lysine-tyrosinyl Ficoll (DNPL-F). When the cells came from animals immunized with DNP-KLH their migration was inhibited by DNPL-F. Control cells from animals immunized with KLH or not immunized migrated normally in the presence of DNPL-F.
A distinctive subpopulation of nonphagocytic, tightly adherent cells (NPAC) comprised approximately 6% of the adherent peritoneal cells from untreated mice, and about 18% of those from mice previously given BCG i.p. A separation procedure based on adherence and lack of phagocytosis was devised. Isolated NPAC were morphologically intermediate between small lymphocytes and macrophages. They were positive for nonspecific esterase, negative for peroxidase, positive for surface IgM, and negative for surface IgG1, IgG2 and IgA. When capped, their surface IgM regenerated in vitro. NPAC had demonstrable Fc receptors but not EAC receptors. They resisted killing by an anti-macrophage serum, were negative by immunofluorescence with an anti-T cell reagent, and incorporated increased amounts of thymidine in response to LPS but not to PHA. They were more readily killed with anti-Ia serum and complement than macrophages, but less readily than splenic B cells. NPAC appeared to represent a subpopulation of B lymphocytes which contaminates some preparations previously regarded as "macrophages" and which may be ressponsible for some of the activities previously ascribed to "macrophages".
SAMM 368, a plasmacytoma which produces IgA-kappa and IgG2b-kappa was established in vitro from primary explants or after animal passage. The 9 lines that were established produced both paraproteins. The production of both immunoglobulins by single cells was demonstrated by immunofluorescent staining and cloning. Continuous culture of 3 parent lines for 18 months and 11 cloned lines for periods from 5 to 7 months demonstrated that double production is a stable characteristic of this plasmacytoma. Two single paraprotein-producing varients (IgG2b or IgA) were derived when cells were cultured in the presence of Fungizone. Chromosomal analysis of SAMM 368 indicates that this double producing tumor has a modal number similar to those observed in myelomas producing a single immunoglobulin class.
Three AKR lymphomas displaying B cell and T cell characteristics have been described. Because of the proclivity of normal AKR/J mice to develop T cell lymphomas, and the rarity of lymphomas with dual characteristics, the B cell markers of these tumors were studied more intensively. Fluorescence data with class-specific anti-immunoglobulin reagents demonstrated that the tumor cells stained only with class-specific anti-IgM reagents. Because of the possibility that the surface Ig was passively acquired and of reports that certain anti-mu-chain sera react with "IgT", chemical characterization of the immunoglobulin molecules was performed. Using 3H-leucine internal labeling, we showed that all three tumor lines synthesized the immunoglobulin found on their surface, and that the immunoglobulin had the chemical and immunologic characteristics most typical of monomeric surface IgM, and was composed of mu-chains and light chains. The Ia antigens found on these cells were also examined. These antigens were also synthesized by the cells and were present in the same molecular form and in the same approximate quantity as Ia antigens on normal spleen cells.