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Biomedical subjects

G Haughton

Publications and source records attributed to G Haughton.

At least 55 records · Page 3Linked to original sources

H-2 control of expression of an idiotype shared by normal B cells and a B-cell lymphoma.

The spleens of normal B10.H-2aH-4bp/Wts (2a4b) mice contain cells which, in response to mitogen stimulation, secrete hemolytic antibody specific for a determinant present on both sheep and bromelain-treated mouse erythrocytes. These cells were found to be Ly-1 positive. Approximately 50% of these cells bear surface immunoglobulin (sIg) with the same idiotype as the sIg of a 2a4b-derived B-cell lymphoma, CH12. Backcross analysis revealed H-2 control of the frequency of the idiotype-positive B cell. The regulatory gene did not correlate with the Igh-1 allotype, and analysis of 22 inbred mouse strains mapped the gene to the I-E subregion. Surprisingly, only strains homozygous for Ek alpha expressed the idiotype, and expression was a recessive trait. Possible mechanisms for this control of idiotype expression and its relation to lymphomagenesis are discussed.

Animals↗

Cross-reactive idiotypes and common antigen binding specificities expressed by a series of murine B-cell lymphomas: etiological implications.

A series of 27 B-cell lymphomas (designated the CH series), induced in B10.H-2aH-4b p/Wts mice by intense adoptive immunization with sheep erythrocytes, was found to represent a subset of the total B-cell repertoire. This subset was characterized by expression of a limited number of Ig heavy chain variable regions, as evidenced by the presence of cross-reactive idiotypes and common antigen binding specificities. Twenty-one of the 27 CH lymphomas studied were classified into five groups, defined by a particular cross-reactive idiotype; four of these groups were linked in a single network. Seven of 16 idiotypes defined by absorption analysis were present on lymphomas bearing either kappa or lambda light chains and so were localized to the heavy chain variable region. The surface Ig on 14 CH lymphomas was found to be specific for epitopes on certain erythrocytes (bromelain-treated autologous erythrocytes, sheep, and chicken erythrocytes) or E. coli. We propose that the CH lymphomas represent the malignant counterparts of a subset of idiotypically related, normal B cells in B10.H-2aH-4b p/Wts mice. Perturbation of this idiotype network, by hyperimmunization with an antigen for which some of the members are specific (sheep erythrocytes), increases the risk for neoplasia. Possible mechanisms for this are discussed.

Animals↗

Two separate functions of class II (Ia) molecules: T-cell stimulation and B-cell excitation.

We have evaluated the role of major histocompatibility complex-encoded class II (Ia) molecules as transmembrane signaling receptors in the T helper cell-dependent activation of B lymphocytes. For these studies, we utilized the murine B-cell lymphoma CH12, which expresses both I-A and I-E class II molecules. In addition, CH12 cells carry IgM of known antigen specificity and require both specific antigen and Ia-restricted T-cell help for the induction of antibody secretion. In this respect, they resemble normal resting B cells. We have studied the ability of antigen-specific or alloreactive T helper cells reactive with either the I-A or the I-E molecules on CH12 to be activated and their ability to stimulate antibody production by CH12. The results show that, although CH12 cells present antigen to T helper cells that interact with either the I-A or the I-E molecules, CH12 cells are stimulated to secrete antibody only by T helper cells reactive with their I-E molecules. Our data demonstrate that class II molecules are transducers of signals for B-cell excitation in addition to serving a restricting function for helper T-cell stimulation. Moreover, the data demonstrate that these two functions, T-cell stimulation and B-cell excitation, are discrete and need not be expressed by the same Ia molecule.

Animals↗

Role of cell surface immunoglobulin in B-lymphocyte activation.

The role of cell surface immunoglobulin in helper T-cell-dependent B-cell activation was analyzed using a B-cell lymphoma, CH12, with known antigen specificity and activation properties similar to those of a resting B cell. Two sources of helper T cells were used, both selected such that they interact with H-2-encoded determinants on CH12 in the absence of the specific B-cell antigen, sheep erythrocytes. By this dissociation of the specificity of the T cells from that of the B cells, the requirement for antigen in the induction of CH12 to antibody secretion could be studied. The results show that both helper T-cell-B-cell interactions and surface immunoglobulin-antigen binding are involved in inducing B-cell differentiation, thus establishing a signalling function for the antigen receptor on B lymphocytes. Our data also show that the requirement for surface immunoglobulin-ligand interactions in B-cell activation can, under certain conditions, be circumvented, notably when high (nonphysiologic) multiplicities of T-cell help are used.

Animals↗

Induced differentiation of a B cell lymphoma with known antigen specificity.

We have previously described a murine B-cell lymphoma, CH12, the cells of which bear surface IgM reactive with sheep erythrocytes (SRbc) and which could differentiate to secrete hemolytic antibody. The question addressed in this paper was whether differentiation of CH12 cells could be influenced by interaction with regulatory T cells and antigen. If so, we wanted to know whether the conditions required differed from those known to govern similar interactions with normal B cells. We had two reasons for wanting to answer these questions. First, we wondered whether CH12 could be used as a clonal population of indicator cells to study the regulation of B cell differentiation and, second, we wanted to know the extent to which these neoplastic cells were still responsive to normal regulatory signals. The first addresses a major difficulty which must be faced in studies of normal B cell differentiation: to what extent is the interpretation limited by heterogeneity of the B cells used? The second relates to the nature of neoplasia and the possibility that neoplastic cells might be rendered harmless by inducing terminal differentiation. CH12 is one of a series of transplantable B cell lymphomas which arose in B10.H-2aH-4b p/Wts (2a4b) mice, following intense immunization with SRbc. It is a monoclonal tumor, all the cells of which bear membrane IgM(kappa) of a single idiotype, reactive with sheep and chicken Rbc and with bromelain-treated autologous mouse Rbc. The cells express KkAkEk and Dd antigens appropriate to the H-2a haplotype. During the latter stages of growth in vivo or in vitro, a small proportion (less than 3%) of the cells differentiate to secrete hemolytic antibody as measured by the Cunningham assay for plaque forming cells (PFC). We cultured CH12 cells for 3 or 4 days, together with antigen and spleen cells from primed animals, and assayed for PFC induction. Differentiation was induced by spleen cells from SRbc primed 2a4b mice in the presence of SRbc or ChRbc but not rabbit or human erythrocytes. Activity was depleted by treatment of the spleen cells with anti-Thy-1 or anti-Lyt-1 but not anti-Lyt-2 plus complement. Helper cells could also be induced by priming 2a4b mice with ChRbc but not rabbit or human Rbc. Neither of these last two would induce differentiation of CH12, even when both homologous antigen and SRbc were present in the cultures.(ABSTRACT TRUNCATED AT 400 WORDS)

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Antigen-induced lymphomagenesis: identification of a murine B cell lymphoma with known antigen specificity.

CH12, a murine B cell lymphoma derived in B10 H-2aH-4bp/Wts mice after transfer of SRBC hyperimmunized spleen cells into an adult-thymectomized, sublethally irradiated, syngeneic recipient, is demonstrated to bear surface IgM specific for a determinant found on SRBC and ChRBC. The Ig specificity has been demonstrated by rosetting assays and complement-dependent hemolysis. The removal of CH12 surface IgM by capping with anti-mu or with anti-CH12 idiotype, but not with anti-gamma or with irrelevant anti-idiotype, eliminated the formation of rosettes between CH12 and SRBC or ChRBC. The absorption of CH12 Ig produced in vitro, with either SRBC or ChRBC but not with HRBC, removed all hemolysin activity against SRBC, demonstrating that only one CH12 product was responsible for the reactivity with both SRBC and ChRBC. CH12 has a surface phenotype of a relatively mature B cell expressing surface Ig (IgM-mu,kappa) and la antigens, but lacking Thy-1 or detectable Fc or C3 receptors. CH12 also expresses the antigen Lyt-1. Growth of CH12 in vivo or in vitro results in the generation of up to 3% direct PFC and serum hemolysin, which shows that CH12 is not irretrievably "frozen". The generation of PFC and serum hemolysin is associated with increased population density, and the rate of PFC and serum hemolysin accumulation cannot be explained by simple cell division. A continuously secreting hybridoma derived from CH12 was used to purify the CH12 IgM to facilitate studies of protein sequence and idiotype.

Animals↗

Chromosome 15 trisomy in spontaneous and carcinogen-induced murine lymphomas of B-cell origin.

G-banding analyses of 14 independently derived B-cell lymphomas showed the frequent occurrence of chromosome 15 trisomy. It was present in seven of nine spontaneous B-cell lymphomas, but in company with other trisomies, monosomies and marker chromosomes. In five carcinogen-induced primary B-cell leukemias, trisomy 15 was the dominating change. Taken together with the previously demonstrated importance of chromosome 15 trisomy for T-cell leukemogenesis and of the 12;15 translocation in plasmacytogenesis in the mouse, it appears likely that the distal part of chromosome 15 carries a cluster of genes, perhaps a supergene region, that may play an important role in the differentiation and/or the normal responsiveness of various lymphoreticular cell types to growth control.

9,10-Dimethyl-1,2-benzanthracene↗

Perturbation of early development of the immune system by normal adult lymphoid cells.

Seven-day-old C57BL/10 mice injected with 3 X 10(6) normal adult lymph node cells (NAL) from syngeneic donors were compared with uninjected littermates when 5 to 7 wk old. The direct PFC response to sheep erythrocytes was suppressed by 60%. Responses to PHA and Con A but not LPS were suppressed by 60 to 90%. Primary and secondary (after skin graft rejection) MLR responses were suppressed by 30 to 40%. Active suppressor cells were demonstrable in these mice. Skin grafts incompatible for H-2 were rejected in normal time. NAL derived from adult mice conferred the effect, but not cells from 7-day-old donors. Mice inoculated with Rous sarcoma virus within the 1st day of life and 3 X 10(6) NAL at 7 days of age displayed up to 5-fold increased incidence of primary sarcomas.

Animals↗

Tolerance to non-H-2 histocompatibility antigens. Transplantation tolerance to the H-4 and H-7 histocompatibility antigens.

There have been several reports of observations which suggest that transplantation tolerance may be a result of positive immunoregulation rather than simply unresponsiveness attributable to a lack of competent effector cells. In particular, several investigators have reported that tolerance of the H-Y and H-1 histocompatibility antigens is mediated by a population of thymus-derived lymphocytes. In a companion report, we have presented evidence that supports the existence of a suppressor cell to the H-Y antigen. Furthermore, we have observed that female mice rendered tolerant of the H-Y antigens by neonatal exposure to male lymphoid cells or by multiparity accept male skin grafts indefinitely, but inactivate male peritoneal exudate cells (PEC) in a second-set fashion. This observation has led us to investigate whether tolerance of other non-H-2 antigens is controlled by a similar mechanism. Using mice congenic with C57BL/10 at the H-4 and H-7 loci, we have shown that mice rendered tolerant of the H-7a and H-4b antigens by neonatal exposure to histoincompatibe lymphoid cells are incapable of rejecting either skin or peritoneal cell allografts, suggesting that identical histocompatibility antigens are present on skin and peritoneal cells. Tolerance induced in neonatal mice to the H-4b and H-7a antigens could not be adoptively transferred to syngeneic recipients. These results suggest that tolerance involving the H-4 and H-7 antigens is most likely because of a clonal inactivation of alloantigen-reactive cells as a consequence of neonatal exposure to antigen.

Animals↗

An investigation of allograft tolerance: Discordant reactivity to murine H-Y-incompatible lymphoid cell (PEC) and skin grafts.

The extremely sensitive peritoneal exudate cell (PEC) transfer technique has been applied to an investigation of the immune response of female mice which are "tolerant" of the male antigen. Females rendered tolerant of male skin grafts by multiparity, neonatal inoculation of male spleen cells, or multiple inoculations of adult females with male lymphoid cells displayed second-set reactivity to male PEC while continuing to tolerate H-Y-incompatible skin grafts. Furthermore, this discordant response to male PEC and skin was adoptively transferrable to normal females by spleen cells from multiparous donors. Females rendered tolerant by irradiation and reconstitution with male cells were unresponsive to both H-Y-incompatible skin and PEC grafts. A model is proposed using two male-specific antigens, the response to which is controlled by independent genes.

Age Factors↗

Murine Rous-sarcoma-specific immunity detected by leukocyte adherence inhibition: inhibitory effect of normal serum.

The standard one-stage lymphocyte adherence inhibition (LAI) assay was used to investigate cellular and humoral immune responses within the murine Rous sarcoma system. Significant specific cellular reactivity to Rous sarcoma antigen extracts was detected when the responder peritoneal exudate cells (PEC) were obtained from mice bearing or immunized against primary or transplanted Rous sarcomas; no cellular reactivity to control methylcholanthrene (MC)-induced tumor antigen extracts was observed. Similarly, specific cell-mediated recognition of MC tumor antigen extract was demonstrated. Initial experiments designed to assess the role of serum components in the LAI assay demonstrated that normal mouse serum of C57BL/10ScSn, B10.D2, or A/WySn origin, either fresh or frozen, obtained from old (over 7 months) or young (under 6 weeks) mice non-specifically abrogated the specific loss of PEC adherence.

Animals↗