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M S Sy

Publications and source records attributed to M S Sy.

At least 91 records · Page 5Linked to original sources

Suppressor T cells, immunoglobulin and Igh restriction.

Why do some T cell express idiotypes that are serologically similar to those of the B cells, since it is now well established that T cells do not use Ig genes for their antigen specific receptors? In this review article, we have summarized some the evidence for the influence of Igh linked genes on the Suppressor T cell repertoire, using anti-u treated mice as a model system. We investigated whether B cells and Ig molecules play a role in the generation of Ts repertoire. While our results clearly confirmed that B cells and Ig are important in the establishment of Ts repertoire, our experiments failed to resolve the fundamental question - 'what dictates the Igh restriction specificity of Ts?' Ts cells from anti-u treated mice did not lose all Igh restriction specificity. Instead, they expressed an altered restriction specificity. These results suggest that there are at least two independent mechanisms responsible for the generation of the suppressor T cell repertoire. A pre-selected germ line one, which is Ig independent, and a mature one, which is Ig dependent. The precise mechanisms responsible for the generation of germ line Ts repertoire remain to be determined.

Animals↗

Selective down modulation of L3T4 molecules on murine thymocytes by the tumor promoter, phorbol 12-myristate 13-acetate.

Treatment of murine thymocytes, but not mature peripheral T cells, with the tumor promoter, phorbol 12-myristate 13-acetate (PMA), 3 results in a rapid disappearance of L3T4 molecules from the surface of thymocytes. The effect of PMA on L3T4 molecules persists in vitro for at least 72 hr. Down modulation of L3T4 molecules was PMA dose-dependent and temperature-dependent. L3T4 molecules on cortisone-resistant thymocytes were significantly less sensitive to the effect of PMA than were L3T4 molecules on cortisone-sensitive thymocytes. Down modulation of L3T4 molecules on thymocytes did not interfere with their capacity to respond to concanavalin A or activation signals delivered via their T cell receptors. The difference in the ability of thymocytes and peripheral T cells to respond to PMA cannot be explained by differences in the number of PMA receptors. Both thymocytes and peripheral T cells have PMA receptors in the range of 1 to 1.5 X 10(5) receptors/cell. However, there is a small difference in the affinity (Kd) of the receptors on thymocytes (Kd = 30 to 40 nM) and peripheral T cells (Kd = 10 to 15 nM). Immunofluorescent staining revealed that the down modulation of L3T4 molecules by PMA was a result of internalization of L3T4 molecules. After down modulation, L3T4 could be readily detected on the cytoplasm of thymocytes. These findings suggest that L3T4 molecules on thymocytes may be subject to different regulatory signals than L3T4 molecules on peripheral T cells.

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Autoreactivity accelerates the development of autoimmunity and lymphoproliferation in MRL/Mp-lpr/lpr mice.

Lymph node T cells from autoimmune MRL/Mp-lpr/lpr mice, but not from congeneic MRL/Mp-+/+ mice, spontaneously proliferate and produce IL 2 when cultured in vitro for 5 to 7 days. This autologous activation depends critically on the length of in vitro culture and the initial culture density, indicating that cell to cell interaction may be essential. Phenotypic characterization of cultured cells suggests that both L3T4+ and Lyt-2+ T cells proliferate. However, only L3T4+ T cells produce IL 2. Mixing experiments reveal that the inability of freshly isolated lymph node cells from MRL/Mp-lpr/lpr mice to proliferate is not due to the presence of suppressor cells. Supernatant from 7-day cultures failed to induce freshly isolated cells to proliferate. Thus, the failure of freshly isolated cells to spontaneously proliferate and secrete IL 2 is not due to the inability of the cells to produce soluble mediators. Similar to the inactivation of normal T lymphocytes, in vitro addition of monoclonal anti-L3T4 or anti-IL 2 receptor antibody significantly inhibits the activation of these cultured lymphocytes. Spontaneous proliferation and IL 2 production can be blocked by the addition of monoclonal anti-I-Ak but not by monoclonal anti-I-Ad. Spontaneous proliferation and IL 2 production can be detected in young (4-wk-old) MRL/Mp-lpr/lpr mice at a time when their lymphocyte composition and physiology appear to be normal. More interestingly, spontaneous proliferation and IL 2 production cannot be detected in C57BL/6J mice bearing the lpr/lpr gene. These experiments support the notion that aberrant syngeneic autoreactivity may act as an accelerating factor in the pathogenesis of lymphoproliferation and autoimmunity in MRL/Mp-lpr/lpr mice.

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Adoptive transfer of murine chronic-relapsing autoimmune encephalomyelitis. Analysis of basic protein-reactive cells in lymphoid organs and nervous system of donor and recipient animals.

Frequency analysis of myelin basic protein (MBP)-reactive lymphocytes was performed in the chronic relapsing murine experimental allergic encephalomyelitis (EAE) model induced by the adoptive transfer of myelin basic protein (MBP)-primed lymphocytes to naive recipients. During the first attack, MBP-reactive cell frequencies were: 1/41,700 in spleen, 1/328,000 in lymph nodes, 1/64,500 in the peripheral blood. After recovery from a second attack, the frequencies were: 1/11,000 in spleen, 1/46,000 in lymph node, and 1/195,000 in the blood. In addition, lymph node cells obtained from animals following a second attack had increased encephalitogenic properties. CNS-derived lymphocytes analyzed during the first attack were 50% Lyt 1.2+ and 16% Lyt 2.2+. After recovery from the second attack, phenotypes were 20% Lyt 1.2+ and 49% Lyt 2.2+. There were only minimal responses to MBP in CNS-derived lymphocytes. Susceptibility to adoptively transferred EAE was in general predicted by whether a proliferative response to MBP occurred following immunization and was not solely H-2 linked. These studies demonstrate an accumulation of autoreactive cells in the spleen and lymph nodes and a shift of the phenotype of cells in the target organ as EAE becomes chronic and suggest there are dynamic immunologic processes, both in the peripheral immune system and target organ associated with relapsing EAE.

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Ratio of Langerhans cells to Thy-1+ dendritic epidermal cells in murine epidermis influences the intensity of contact hypersensitivity.

We have initiated a series of studies in vivo to investigate the physiologic role of Langerhans cells and Thy-1+ dendritic epidermal cells in the development and regulation of contact hypersensitivity. The density of I-A+ Langerhans cells and Thy-1+ dendritic epidermal cells in ammonium thiocyanate-separated epidermal sheets was determined in ten strains of inbred mice using immunofluorescence microscopy with monoclonal anti-I-A and anti-Thy-1 antibodies. Mice of different inbred strains were sensitized by painting the left ear with varying doses of either oxazolone or trinitrochlorobenzene. From five to 20 days after sensitization, groups of mice were challenged with the relevant antigen and the intensity of contact hypersensitivity, as measured by ear swelling, was determined. We then determined whether the intensity and/or duration of contact hypersensitivity in different strains of mice was influenced by the density of Thy-1+ dendritic epidermal cells or the ratio of I-A+ Langerhans cells to Thy-1+ dendritic epidermal cells. We found that there was marked variability in the density of Thy-1+ dendritic epidermal cells and I-A+ Langerhans cells in the ten strains of mice studied. The ratio of I-A+ Langerhans cells to Thy-1+ dendritic epidermal cells ranged from 0.5 in C57BL/10J mice to greater than 22 in A/J and BALB/cByJ mice. When small amounts of contact sensitizers were used to induce contact hypersensitivity (e.g., 20 micrograms of oxazolone or trinitrochlorobenzene), there was consistent strain variability in the intensity of ear swelling. There was a significant correlation between the ratio of I-A+ Langerhans cells to Thy-1+ dendritic epidermal cells and the intensity of contact hypersensitivity (Pearson's correlation coefficient 0.85, p = 0.002). Strains with the highest ratios of I-A+ Langerhans cells to Thy-1+ dendritic epidermal cells had the most ear swelling. There were no consistent differences in the duration of contact hypersensitivity observed among the ten different strains. Our results indicate that Thy-1+ dendritic epidermal cells may play a physiologic role in down-regulating contact hypersensitivity in vivo.

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T cell development in B cell-deficient mice. V. Stopping anti-mu treatment results in Igh-restricted expansion of the T suppressor cell repertoire concomitant with the development of normal immunoglobulin levels.

B cell-deficient (anti-mu-treated) mice have proven to be a valuable tool with which to examine the influence of Ig idiotypic determinants upon the development of the Ts repertoire. We have previously reported that ABA-specific Ts repertoires matured in normal and Ig-deficient environments differ from one another in their composition, and consequently, their functionally expressed Igh restrictions. The present report characterizes the impact of natural development of mature B cell activity upon the composition of the Ts repertoire. After stopping anti-mu treatment of C.AL-20 mice, ABA-specific Ts repertoires undergo a defined expansion shown by their acquisition of an additional Ts network that displays Igh restrictions characteristic of normal C.AL-20 mice. This Igh-1d-restricted repertoire can be readily shown within 2 wk of major increases in surface Ig spleen cells and total serum Ig levels in these mice. At the same time, the original Ts restriction specificity (Igh-1a-restricted) generated in the Ig-deficient environment of anti-mu. C.AL-20 mice, is not lost for at least 20 wk. The resulting dual Ts repertoire, characterized by expression of parallel, idiotypically restricted Ts networks, is demonstrable for at least 13 wk. These findings favor an important role for Ig determinants in determining the makeup of the T cell repertoire, and ultimately, the composition of immunologic networks as a whole.

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T cell development in B cell-deficient mice. IV. The role of B cells as antigen-presenting cells in vivo.

B cell-deficient, rabbit anti-mouse IgM-treated mice were compared with normal or normal rabbit immunoglobulin-treated controls in their ability to develop proliferative T cell responses, delayed hypersensitivity, and primary or secondary cytotoxic T cell responses. Immunization with hapten-coupled autologous spleen cells resulted in anti-mu-treated mice generating only marginal T cell responses. This decreased responsiveness was shown to be attributable not to an intrinsic T cell defect or to changes in the ability of macrophages from anti-mu-treated mice to present soluble antigen, but rather to the greatly diminished capacity of B cell-deficient spleen cells to present antigen. The results support the concept that B cells play a significant role in antigen presentation required for T cell activation.

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T cell development in B cell-deficient mice. II. Serological characterization of suppressor T cell factors (TsF1) produced in normal mice and in mice treated chronically with rabbit anti-mouse IgM antibodies.

Serological analysis of idiotypic specificities present in azobenzenearsonate (ABA)-specific first-order suppressor T cell factors (TsF1) from C.AL-20 and BALB/c mice revealed a significant difference between TsF from these two strains of mice. The idiotypic composition of TsF1 from BALB/c mice appears to be more heterogeneous, and at least two different fractions can be readily identified. One bears the characteristic BALB/c-associated CRI(C) (crossreactive idiotype) determinants, and the other is non-CRI(C)-bearing. Analysis of ABA-specific TsF1 from animals lacking B cells uncovered a fundamental change in the expression of their idiotypic specificities. TsF from rabbit anti-mouse IgM (anti-mu)-treated C.AL-20 mice failed to express the characteristic CRI(A) determinants. Instead, they express CRI(C) specificities. Similarly, TsF1 from anti-mu-treated BALB/c mice did not express their characteristic CRI(C) specificities, but rather express CRI(A) determinants. These experiments provide strong evidence that the Igh restriction specificity of TsF is dictated by the particular idiotypic specificities expressed. They also clearly demonstrate that B cells and their products play an important role in establishing the idiotypic composition and repertoire of suppressor T cells.

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Regulation of hapten-specific T-cell response. II. Functional analysis of helper T cells and cytotoxic T cells in animals suppressed by azobenzenearsonate (ABA)-specific suppressor T cells.

The administration of azobenzenearsonate-modified syngeneic spleen cells (ABA-SC) intravenously induces a population of first order hapten-specific inducer suppressor T cells (Ts1), which downregulate various aspects of T-cell-mediated immune responses via a well defined suppressor-T-cell pathway. In this study, we investigated the effects of these suppressor cells on the generation of ABA-specific cytolytic T lymphocytes (CTL) and helper T cells (Th) in vivo. We found evidence for functional impairment of ABA-activated Th and ABA-specific CTL precursors (CTLp) in the suppressed animals by a number of different in vitro criteria. Functional analysis of ABA-specific CTLp and ABA-activated Th in suppressed animals revealed that ABA-specific Ts inhibit the generation of CTL by impairing the antigen-specific activation of Th, which may in turn, prevent the clonal expansion of antigen-specific CTLp. The significance of these findings in relationship to our understanding of the cellular interactions necessary for the generation of CTL and the mode of action and mechanisms of suppressor T cells is discussed.

Animals↗

Suppressor T-cell factor(s) display an altered pattern of Igh (immunoglobulin heavy chain locus) genetic restriction when developed in an Igh-congeneic host.

Suppressor T-cell factor(s) (TsF1) inhibit the in vivo priming of azobenzenearsonate-specific cytotoxic T-cell responses. The activity of TsF1 is restricted by genes linked to Igh-1 allotypic markers. TsF1 obtained from B6.Igh-1n mice was unable to suppress the immune response in B6.Igh-1b mice and vice versa. However, TsF1 prepared from B6.Igh-1n T cells "parked" in an Igh-congeneic B6.Igh-1b environment displays an additional restriction specificity of the host. Thus, TsF1 prepared from these Igh-chimeric mice suppressed immune responses in both B6.Igh-1n (donor) and B6.Igh-1b (recipient) mice but not in mice of the unrelated strain BALB/c.Igh-1a. The results indicate that the establishment of the suppressor T-cell repertoire is dependent not only upon the genetic background of the individual T cell but also upon the influence of Igh-linked determinants present when T-cell clones are selected during the response.

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T cell development in B cell deficient mice. III. Restriction specificity of suppressor T cell factor(s) produced in mice treated chronically with rabbit anti-mouse mu chain antibody.

A role for Igh linked genes and the idiotypes they encode has been implicated in the activity of a variety of T cell subpopulations. Idiotype restricted T cell function has been observed for helper and suppressor cell populations. The finding that T cell receptor genes are distinct from B cell receptor (Igh) genes strongly argues against a direct role for immunoglobulin genes in the determination of the T cell repertoire. Nevertheless, idiotypic Ig determinants may play an indirect role in influencing the ultimate composition of the T cell repertoire. One approach to this question involves evaluation of T cell activity upon development in an immunoglobulin deficient environment. The availability of antigens which elicit T cell and antibody responses characterized by the expression of dominant crossreactive idiotypes under the control of Igh genes provides an ideal approach to investigate the basis for the expression of Igh-like structures on T cells and the concomitant functional genetic restrictions they determine. Thus, we have prepared B cell deficient mice by continuous treatment, beginning at birth, with rabbit anti-mouse IgM. The network which comprises the suppressor T cell response to azobenzenearsonate (ABA) was then examined in normal and anti-mu treated mice to assess what role, if any, immunoglobulin encoded determinants play in influencing the composition of the peripheral T cell pool. The results clearly demonstrate that the absence of Ig+ B cells leads to major alterations in the composition of the T cell repertoire. Anti-mu treated, but not normal rabbit Ig treated, mice produce TsF1 which fails to suppress cytotoxic T lymphocyte or helper T cell responses of normal syngeneic mice, yet efficiently suppresses those of syngeneic anti-mu treated recipients. Reciprocally, normal TsF1, though suppressive in normal Igh-1 syngeneic recipients, fails to affect the development of responses in anti-mu treated syngeneic mice. TsF1 obtained from anti-mu treated mice is antigen-specific. Testing of anti-mu TsF in a variety of normal or anti-mu treated recipients reveals no MHC restrictions. In marked contrast, anti-mu TsF reflects a novel pattern of Igh functional restrictions. The observed Igh restrictions were found to map to the idiotype encoding VH regions of the Ig heavy chain gene cluster (Igh-VH). The results demonstrate that T cell maturation in the virtual absence of environmental immunoglobulin can lead to profound changes in the composition of the T cell compartment. The means by which the absence of Ig encoded determinants leads to such changes is speculated upon.

Agammaglobulinemia↗

Chronic treatment with rabbit anti-mouse mu-chain antibody alters the characteristic immunoglobulin heavy-chain restriction of murine suppressor T-cell factors.

Prolonged treatment of mice, starting at birth, with rabbit anti-mouse mu-chain antibodies resulted in the elimination of immunoglobulin-bearing B cells in these animals. The ability of these animals to elicit antigen-specific delayed-type hypersensitivity or cytotoxic T-cell responses to azobenzenearsonate-coupled spleen cells was not impaired. The effect of anti-mu treatment on the restriction by immunoglobulin heavy-chain genes (Igh) of suppressor T cells was investigated. We found that first-order suppressor T-cell factor ( TsF1 ) obtained from anti-mu treated animals expresses an Igh restriction pattern distinct from that observed with TsF1 from normal untreated mice. Furthermore, TsF1 prepared from anti-mu treated animals did not express the major crossreactive idiotypic determinants normally present in TsF1 . The significance of these findings in relation to the role of immunoglobulin on the T-cell repertoire is discussed.

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Comparison of antigen-specific T cell responses in autoimmune MRL/Mp-lpr/lpr and MRL/Mp-+/+ mice.

The MRL-1 mouse develops severe autoimmune disease characterized by high titers of autoantibodies at an early age (3 to 5 mo). The congeneic MRL-n mouse, which differs only in the lymphoproliferative (lpr) gene, exhibits no such pathologic or serologic abnormalities at the same age. We examined antigen-specific T cell responses in the MRL-1 mouse and compared them to age- and sex-matched MRL-n controls. We found broad defects in these responses in the MRL-1 mouse; an inability to generate primary allospecific and hapten-specific cytolytic T lymphocytes (CTL), secondary hapten- and virus-specific CTL, as well as a deficient proliferative response to hapten and natural antigens and a weak delayed-type hypersensitivity response were demonstrated. Our data furthermore suggest a lack of interleukin 2 (IL 2) acceptor sites in the proliferating T cell, while suggesting no such lack on CTL precursors. In fact, the deficient CTL responses in MRL-1 mice can be restored to levels seen in MRL-n by the in vitro addition of IL 2. The implications of these findings and the possible explanations for the relative deficit in helper function in the MRL-1 mouse are discussed.

Aging↗

An antigen-specific signal is required for the activation of second-order suppressor T cells in the regulation of delayed-type hypersensitivity to 2,4,6-trinitrobenzene sulfonic acid.

Suppressor T cells (Ts-1) induced with trinitrophenyl (TNP)-conjugated syngeneic spleen cells (TNP-SC) can be enriched on antigen-coated plates and are afferent suppressors. In addition, these suppressor cells produced soluble suppressor factors (TsF) that were active in vivo. Therefore, the Ts-1 cells in the TNP system are very similar to the Ts-1 cells in other systems we have studied earlier. Further characterization of these TsF-1 revealed that TsF-1 obtained from TNP-SC-induced Ts-1 is major histocompatibility complex restricted in its activity. Injection of TNP-specific TsF-1 into naive mice did not induce Ts-2 unless additional corresponding antigen was provided. Moreover, the Ts-2 cells induced by administration of both TsF-1 and trinitrobenzene sulfonic acid were antigen specific rather than antiidiotypic.

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Inhibition of delayed-type hypersensitivity by heparin depleted of anticoagulant activity.

The intravenous or intraperitoneal injection of heparin fractions depleted of anticoagulant activity (HFDA) into mice, either at the time of immunization or challenge, inhibited hapten-specific delayed-type hypersensitivity (DTH) reactions. The loss was not due to functional elimination of sensitized lymphocytes, since mice sensitized with the contactant and then treated with HFDA retained their ability to transfer reactivity into normal syngeneic recipients. In contrast, lymphocytes from sensitized mice were unable to produce DTH reactivity in recipient mice pretreated with HFDA. The intravenous injection of HFDA resulted in a rapid, but transient increase in the number of circulating leukocytes. The intravenous injection of HFDA also reduced the footpad swelling that resulted from a local injection of concanavalin A. It is postulated that HFDA exercise their inhibitory effects on the DTH response by interfering with the migration of cells into the challenge site.

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Effect of vesicular stomatitis virus (VSV) infection on the development and regulation of T cell-mediated immune responses.

Infection of mice with vesicular stomatitis virus (VSV) at the time of immunization failed to enhance T cell-mediated immune response to azobenzenearsonate-(ABA) conjugated spleen cells as measured by delayed-type hypersensitivity and by in vitro proliferation and in vitro generation of ABA-specific cytotoxic T cells. However, mice infected with VSV are incapable of responding to signals from suppressor T cells or their soluble factors. Further analysis revealed that VSV infection does not interfere with the induction of Ts-1 or Ts-2 cells. Because infection of Ts-1 or Ts-2 donors had no effect on the subsequent response seen in the recipients of antigen and suppressor T cells, the most likely candidate for the target of VSV infection is therefore the Ts-3 cell or another T cell interacting with Ts-3. This is supported by our observation that it is possible to bypass the VSV effect by providing the recipients of VSV with normal Lyt-2+-bearing T cells.

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Regulation of the hapten-specific T cell response. I. Preferential induction of hyporesponsiveness to the D-end of the major histocompatibility complex in the hapten-specific cytotoxic T cell response.

In this paper we have examined the phenomenon of hapten-specific tolerance in the cytolytic T lymphocyte (CTL), using the trinitrophenyl (TNP) and azobenzenearsonate haptens. We found that the H-2 K and H-2 D-end restricted CTL in H-2a mice are differentiable in the ease with which they are tolerized to the TNP hapten. With TNP modified syngeneic spleen cells (TNP-SC), or low amounts of trinitrobenzylsulfonic acid as tolerogen, preferential hyporesponsiveness of D-end restricted CTL can be observed. Larger doses of hapten, e.g. a higher amount of trinitrobenzylsulfonic acid, will tolerize both K- and D-end restricted TNP-specific CTL in H-2a mice. The phenomenon of preferential D-end restricted CTL hyporesponsiveness is not observed in H-2d, H-2k, or H-2b mice, nor is it observed in H-2a mice with respect to the azobenzenearsonate hapten. We have also shown that the clones of CTL responsible for lysis of TNP-modified allogeneic targets (cross-reactive lysis) in H-2a mice probably overlap with the D-end restricted TNP-specific CTL since D-end restricted hyporesponsiveness induced by intravenous injection of TNP spleen cells also results in the elimination of cross-reactive lysis of TNP-modified allogeneic targets. The possible mechanisms of preferential D-end hyporesponsiveness to the TNP hapten in the H-2a mice as well as its significance and relationship to previous work in this area are discussed in this paper.

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I-J-restricted interactions in the generation of azobenzenearsonate-specific suppressor T cells.

The genetic restrictions of the activation of third-order suppressor cells (Ts3) were studied in mice, using two different types of anti-azobenzenearsonate (ABA)-immune responses, namely delayed-type hypersensitivity (DTH) and cytotoxic T lymphocyte (CTL) generation. Ts2 cells were induced in several different strains of mice by injecting monoclonal T hybridoma molecules or first-order suppressor factors (TsF1) originating in A/J (H-2a, Igh-1e) mice and then testing the TsF2 molecules derived from these Ts2 in A/J and A.By (H-2b, Igh-1e) or (A/J X A.By)F1 (H-2a/b, Igh-1e) and (C57Bl/6 X A/J)F1 (H-2b/a, Igh-1e) mice. It was shown that the activity of TsF2 was restricted to the I-J of the strain in which Ts2 was induced. By genetic analysis, restriction was shown to be due to the requirement of H-2 identity between ABA-coupled cells used for Ts3 activation and the strain of the TsF2 origin. Moreover, by using H-2-congenic ABA-coupled cells, we were also able to precisely map and demonstrate that ABA-coupled cells I-J identical to TsF2 induced in various strains were necessary for effective suppression to occur. This selective activation of Ts3 suggested the existence of I-J-related antigen presentation for suppression as the counterpart of I-A or I-A-I-E-restricted antigen presentation for positive immune responses.

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