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Regulatory functions of hapten-reactive helper and suppressor T lymphocytes. II. Selective inactivation of hapten-reactive suppressor T cells by hapten-nonimmunogenic copolymers of D-amino acids, and its application to the study of suppressor T-cell effect on helper T-cell development.

An experimental condition was established in vivo for selectively eliminating hapten-reactive suppressor T-cell activity generated in mice primed with a para-azobenzoate (PAB)-mouse gamma globulin (MGG)-conjugate and treated with PAB-nonimmunogenic copolymer of D-amino acids (D- glutamic acid and D-lysine; D-GL). The elimination of suppressor T-cell activity with PAB-D-GL treatment from the mixed populations of hapten- reactive suppressor and helper T cells substantially increased apparent helper T-cell activity. Moreover, the inhibition of PAB-reactive suppressor T-cell generation by the pretreatment with PAB-D-GL before the PAB-MGG-priming increased the development of PAB-reactive helper T-cell activity. The analysis of hapten-specificity of helper T cells revealed that the reactivity of helper cells developed in the absence of suppressor T cells was more specific for primed PAB-determinants and their cross-reactivities to structurally related determinants such as meta-azobenzoate (MAB) significantly decreased, as compared with the helper T-cell population developed in the presence of suppressor T lymphocytes. In addition, those helper T cells generated in the absence of suppressor T cells were highly susceptible to tolerogenesis by PAB-D- GL. Similarly, the elimination of suppressor T lymphocytes also enhanced helper T-cell activity in a polyclonal fashion in the T-T cell interactions between benzylpenicilloyl (BPO)-reactive T cells and PAB- reactive T cells after immunization of mice with BPO-MGG-PAB. Thus inhibition of BPO-reactive suppressor T-cell development by the BPO-v-GL- pretreatment resulted in augmented generation of PAB-reactive helper T cells with higher susceptibility of tolerogenesis to PAB-D-GL. Thus, these results support the notion that suppressor T cells eventually suppress helper T-cell activity and indicate that the function of suppressor T cells related to helper T-cell development is to inhibit the increase in the specificity and apparent affinity of helper T cells in the primary immune response. The hapten-reactive suppressor and helper T lymphocytes are considered as a model system of T cells that regulate the immune response, and the potential applicability of this system to manipulating various T cell-mediated immune responses is discussed in this context.

Animals

Regulatory functions of hapten-reactive helper and suppressor T lymphocytes. III. Amplification of a generation of tumor-specific killer T-lymphocyte activities by suppressor T-cell-depleted hapten-reactive T lymphocytes.

2,4.6-trinitrophenyl (TNP)-reactive T-cell activities were raised in mice by immunization with TNP-isologous mouse gamma globulin. After establishing that TNP-reactive T lymphocytes can serve as amplifier cells for induction of killer T lymphocytes in allogeneic system, we explored the possibility of this hapten-reactive T-cell system to amplify tumor-specific killer T-lymphocyte activity in the syngeneic system. We utlized relatively weak immunogenic syngeneic plasmacytoma X5563 in C3H/He mice. Analysis of the TNP-reactive T-cell activities revealed that such T lymphocytes express the biological functions of both major subtypes of regulatory T cells, namely suppressors and helpers, and that TNP-reactive suppressor and helper T lymphocytes, respectively, differ in their relative susceptibility to specific inactivation by TNP conjugates of the nonimmunogenic D-amino acid copolymer, D-glutamic acid, and D-lysine (D-GL). By taking advantage of the relative susceptibility-difference to TNP-D-GL, selective inactivation of TNP-reactive suppressor T cells was induced by appropriate treatment with TNP-D-GL, and the generation of TNP-reactive helper T-cell activity was amplified. The supplement of augmented TNP-reactive helper T-cell activity to the system at the immunization with syngeneic X5563 with TNP-haptenation, resulted in a striking augmentation of induction of tumor-specific killer T-lymphocyte activity, and a considerable number of hosts survived after the challenge with lethal dose of viable tumor cells. Thus, appropriate manipulations designed to induce potent hapten-reactive helper T-lymphocytes provided the potential for a very effective mode of immunoprophylaxis against tumor.

Animals

PPD-induced immunoglobulin production in human peripheral blood lymphocytes. II. Separation of PPD-reactive helper T cells from PWM-reactive helper T cells in polyclonal immunoglobulin production of human peripheral blood lymphocytes.

We investigated the relationship bewteen PPD-reactive helper T cells and PWM-reactive helper T cells in polyclonal Ig production of human PBL. Elimination of PPD-reactive T cells by BUdR + light treatment resulted in a loss of helper function in PPD-induced Ig production, but had no effect on helper function in PWM-induced Ig production. On the other hand, elimination of PWM-reactive T cells resulted in a loss of helper function in both PPD-induced Ig production and PWM-induced Ig production. A blast cell-enriched fraction that was generated by PPD and separated by the velocity sedimentation method contained helper function in both responses. On the other hand, blast cell-depleted fractions did not contain PPD-reactive helper function, although the PWM-reactive helper function was evident. These results strongly suggest that PPD-reactive helper T cells are included in PWM-reactive helper T cells.

Bromodeoxyuridine

Differentiation between process and reactive schizophrenia based on vestibular reactivity, grasp strength, and posture.

The sensory-integrative treatment approach for the adult schizophrenic was indirectly examined by focusing on the differences between process and reactive subtypes of schizophrenia. Differences between the process and reactive schizophrenic were evaluated on the basis of three variables; grasp strength, posture, and vestibular reactivity. Results of the study indicated a significant difference between the process subtype schizophrenic subjects and normal subjects on all three variables, and a significant difference in vestibular reactivity between the process and reactive schizophrenic groups. Vestibular reactivity appears to be a variable by which to distinguish between reactive and process schizophrenic patients.

Adult

Graft versus leukemia. VIII. Selective reduction in antihost reactivity without loss of antileukemic reactivity by treatment of donor mice with lipopolysaccharide.

Spleen and lymph node cells from DBA/2 (H-2d) donor mice treated with multiple injections of bacterial lipopolysaccharide (LPS) were tested in vivo for reactivity against normal tissues of host AKR (H-2k) mice against an AKR long-passage, acute lymphoblastic leukemia (BW5147). LPS treatment of donor mice resulted in a reduction in graft-versus-host (GVH) reactivity without loss of graft-versus-leukemia (GVL) reactivity. Immunocompetent cells from LPS treated DBA/2 donors were effective when used for adoptive immunotherapy (in combination with chemoradiotherapy) of BW5147 leukemia. GVH associated mortality decreased as the dose of spleen cells from LPS treated histoincompatible donors was increased as much as four times the number necessary to eliminate leukemia. The mechanism by which LPS reduced GVH reactivity without eliminating GVL reactivity is unclear; however, it does not appear to be the result of a dilution in the number of GVH reactive cells by nonlymphoid elements in the donor spleen nor of the adjuvant effects of LPS on resistance to bacterial infections.

Animals

Natural cytotoxic reactivity of mouse lymphoid cells against syngeneic acid allogeneic tumors. I. Distribution of reactivity and specificity.

Lymphoid cells from many normal mice of a variety of inbred strains were found to have reactivity, in a 51Cr release cytotoxicity assay, against several syngeneic and allogeneic tumors. Very high reactivity was seen with effector cells from athymic nude mice, which was consistent with other evidence that the reactivity was not T-cell dependent. Target cells susceptible to lysis included tumors induced by oncogenic type-C viruses but also tumors induced by other means and expressing endogenous type-C viruses. The levels of natural reactivity were influenced by age, with highest cytotoxicity produced by cells from 5- to 8-week-old mice. Lymph-node cells, spleen cells, peritoneal exudate cells and peripheral blood lymphocytes all had cytotoxic reactivity. The specificity of the reactions was analyzed in detail by ana inhibition assay. Evidence was obtained for natural reactivty against several different antigens, each apparently associated with expression of murine endogenous type-C viruses.

Age Factors

Sequential in vitro reactivity of lymphocytes from melanoma patients receiving immunotherapy compared with the reactivity of lymphocytes from healthy donors.

A microcytotoxicity technique was used to determine the sequential in vitro reactivity against melanoma cells of lymphocytes from melanoma patients receiving immunotherapy and from healthy donors. Lymphocytes were collected 2 weeks for 2-3 months and were stored in liquid nitrogen until use. Preliminary studies had indicated that freezing did not effect the reactivity of lymphocytes. Lymphocytes from 10 healthy donors tested against melanoma cells exhibited substantial reactivity which showed no consistent pattern over time. Lymphocytes from 9 melanoma patients exhibited increased reactivity after immunotherapy. Patterns of reactivity against melanoma cells and against bladder carcinoma cells were similar, indicating lack of specificity for melanoma antigens. Correlations with clinical course of the disease were not apparent.

Adult

Studies on the reactive properties of histone amino groups: reactivities of free histones and histones in chromatin as a function of ionic strength.

The reactivity of the amino groups of the five histones towards acetic anhydride has been measured and with the exception of histone IIb2 the reactivities are very similar to those of exposed lysines with an average pK of 9.5. In addition the reactivities of these groups from 0.20 to 1.0 M NaCl and the reactivity of a peptide containing lysines 5, 8, 12 and 16 of histone IV have been measured in chromatin. It is concluded that at the lower ionic strengths the large proportion of the amino groups are buried for both the histones and the region of histone IV studied. Data obtained from the measurement of the reactivity of standard proline compounds and from a pH and ionic strength study indicate that the N-terminal proline of histone IIb2 is exposed.

Amines

Bronchial histamine reactivity: its relationship to the reactivity of the bronchi to allergens.

The aim of this study was to examine the proposal that the magnitude of the response of the bronchi to an immediate allergic reaction depends not only on the degree of sensitization of the bronchi by allergen specific IgE antibody but also on the reactivity of the bronchi to the vasoactive mediators which are released during immediate allergic reactions. This was done by determining the bronchial reactivity to Dermatophagoides pteronyssinus and to histamine of both symptomatic and asymptomatic groups of atopic subjects who had comparable serum levels of D. pteronyssinus specific IgE. Positive bronchial responses to the D. pteronyssinus extract were recorded with both the symptomatic and asymptomatic subjects, the mean bronchial threshold dose of allergen being significantly higher in the asymptomatic than in the asthmatic patients. There was a highly significant correlation between the serum level of allergen specific IgE and the bronchial threshold dose of allergen extract and also between the bronchial threshold dose of allergen extract and of histamine in all groups of subjects. The ability to predict bronchial reactivity to the allergen from the serum level of allergen specific IgE within each group was significantly better if the bronchial reactivity to histamine was included in the correlation analysis. This supports the hypothesis that whether a particular subject who is producing specific IgE antibody will develop symptoms on the inhalation of that allergen depends not only on the amount of allergen which he inhales and on the degree of sensitization of his bronchi but also on the reactivity of his bronchi to the vasoactive mediators which are released by allergen-IgE interaction.

Administration, Intranasal

Reconstitution of lactic dehydrogenase. Noncovalent aggregation vs. reactivation. 2. Reactivation of irreversibly denatured aggregates.

Noncovalent aggregation is a side reaction in the process of reconstitution of oligomeric enzymes (e.g., lactic dehydrogenase) after preceding dissociation, denaturation, and deactivation. The aggregation product is of high molecular weight and composed of monomers which are trapped in a minium of conformational energy different from the one characterizing the native enzyme. This energy minimum is protected by a high activation energy of dissociation such that the aggregates are perfectly stable under nondenaturing conditions, and their degradation is provided only by applying strong denaturants, e.g., 6 M guanidine hydrochloride at neutral or acidic pH. The product of the slow redissolution process is the monomeric enzyme in its random configuration, which may be reactivated by diluting the denaturant under optimum conditions of reconstitution. The yield and the kinetics of reactivation of lactic dehydrogenase from pig skeletal muscle are not affected by the preceding aggregation-degradation cycle and are independent of different modes of aggregate formation (e.g., by renaturation at high enzyme concentration or heat aggregation). The kinetics of reactivation may be described by one single rate-determining bimolecular step with k2 = 3.9 x 10(4) M-1 s-1 at zero guanidine concentration. The reactivated enzyme consists of the native tetramer, characterized by enzymatic and physical properties identical with those observed for the enzyme in its initial native state.

Animals

Characterization of the papain active centre by using two-protonic-state electrophiles as reactivity probes. Evidence for nucleophilic reactivity in the un-interrupted cysteine-25-histidine-159 interactive system.

1.2,2'-Dipyridyl disulphide (2-Py-S-S-2-Py) and n-propyl 2-pyridyl disulphide (propyl-S-S-2-Py) were used as two-protonic-state reactivity probes to investigate the active centre of papain (EC 3.4.22.2).2. The existence of a striking rate optimum at pH approx. 4 in the reaction of papain not only with the symmetrical probe but also with the unsymmetrical probe is shown to constitute compelling evidence that the thiolate ion component of the cysteine-25-histidine-159 interactive system of papain possesses appreciable nucleophilic character. It is not a necessary requirement that the probe reagent should engage the imidazolium ion of histidine-159 in hydrogen-bonding for the sulphur atom of the interactive system to display nucleophilic character. The single proton-binding site of propyl-S-S-2-Py cannot simultaneously interrupt the active-centre ion pair and provide for rate enhancement as the pH is lowered towards 4. The possible implication of this for the mechanism of papain-catalysed hydrolysis is discussed. 3. The suspected difference in the active centres of papain and ficin (EC 3.4.22.3), which could be a lack in ficin of a carboxy group conformationally equivalent to that of aspartic acid-158 of papain is confirmed. The reactivity of the papain thiol group towards both probe reagents is controlled by two ionizations with pKa close to 4 that are positively co-operative. 4. In the reaction of papain with 2-Py-S-S-2-Py. the reactivity appears to be controlled also by an addition ionization with pKa approx. 5. Possible origins of this additional ionization are discussed. K. The spectral and ionization characteristics of propyl-S-S-2-Py are reported. 6. The reagent reacts rapidly with thiol groups at the sulphur atom distal from the pyridyl ring to provide, at pH values below 9, stoicheiometric release of 2-thiopyridone. This property, together with the ability of the reagent markedly to increase its electrophilicity consequent on protonation, suggests alkyl-2-pyridyl disulphides in general as valuable two-protonic-state reactivity probes with exceptional specificity for thiol groups.

2,2'-Dipyridyl

Cross-reactivity between H-2K and H-2D products. I. Evidence for extensive and reciprocal serological cross-reactivity.

Serological cross-reactivity between the products of the H-2K and H-2D genes has been demonstrated by a design in which antibody was produced against determinants controlled by one locus (e .g . H-2K(k)), and then tested against the product of the opposite locus (e .g . H-2D(d)). A total of 13 out of 18 such test combinations exhibited H-2K-H-2D cross-reactivity. The presence or absence of cross-reactivity was reciprocal in most cases (i.e. antibody directed against the H-2K(k) gene product reacted with H-2(d) determinants, and antibody directed against the H-2D(d) gene product reacted with H-2K(k) determinants). An Ia-like reaction was detected with one antiserum which implied possible cross-reactivity between the products of two discrete la genes.

Animals

Regulatory functions of hapten-reactive helper and suppressor T lymphocytes. I. Detection and characterization of hapten-reactive suppressor T-cell activity in mice immunized with hapten-isologous protein conjugate.

Helper and suppressor T-cell activities were detected simultaneously in the spleen cells of mice immunized with para-azobenzoate (PAB)-mouse gammaglobulin (MGG). Dinitrophenyl (DNP)-specific B cells were raised by immunization with DNP-keyhole limpet hemocyanin (KLH) and used as the indicator B-cell population. The helper and suppressor T-cell activities were determined after adoptively transferring spleen cells from PAB-MGG- primed donors and DNP-KLH-primed donors into X-irradiated recipients. Stimulation of these recipients with DNP-MGG-PAB detected helper T-cell activity, which was measured in terms of increased anti-DNP antibody responses of DNP-KLH-primed cells over these responses in the presence of unprimed cells. On the other hand, when DNP-KLH-primed cells were stimulated with DNP-KLH-PAB in the presence of PAB-MGG-primed cells, anti-DNP antibody responses were substantially lower than in unprimed normal cells. This suppressor cell population was (a) hapten-reactive, (b) present in B-cell-depleted spleen cells, (c) Thy-1 positive, (d) detectable earlier than the helper T-cell activities after priming (e) more radiosensitive than helper cells, and (f) found in the spleen but not the lymph nodes in contrast to helper T cells. These data indicate that these suppressor T cells are distinct from the helper T cells. PAB-reactive T cells clearly suppressed the antibody response by inhibiting KLH-reactive helper T-cell functions. The hapten-reactive T-lymphocyte system described here should be useful for analyzing and manipulating the immune response and for studying regulatory interactions of helper and suppressor T cells in the induction of antibody responses.

Animals

Further characterization of protein A reactive and non-reactive subfragments of Fc from human IgG.

Tryptic digests of acid-treated Fc from normal human IgG were separated into four peaks (I-IV) by gel filtration on Sephadex G-100. The second peak was further divided into two fractions (II and II'). Peak I was indistinguishable from intact Fc on electrophoresis, immunodiffusion, and reactivity to protein A. The protein A reactive fragments of fractions II, II', and III were shown to contain antigenic determinants of both the CH2 and CH3 domains, to interact with the anti-Gm (1) specific rheumatoid factor, and to fix complement. These results, together with SDS-electrophoresis, showed that protein A reactive fragments are all composed of an intact Fc chain with shorter chains covalently linked to it. The protein A non-reactive fragments of fractions II' and III were homogeneous, fixed complement and showed no interaction with the Gm (1) rheumatoid factor. These results, in addition to the observed antigenic determinants, localized the fragments to the CH2 region.

Bacterial Proteins

Mixed leukocyte culture reactivity in operationally tolerant rats: Relationship of lymphocyte-mediated reactivity and serum-blocking activity.

Tolerance to Brown Norway (BN) allografts was induced in Wistar Furth rats by neonatal inoculation of BN bone marrow cells or mixtures of (W/Fu x BN)F-1 hybrid spleen and bone marrow cells. Lymphoid cells from rats in which operational tolerance had been induced (maintenance of BN skin graft for more than 100 days) were studied for mixed leukocyte culture (MLC) reactivity. Peripheral blood lymphocytes from 10 of 25 W/Fu rats operationally tolerant to BN skin grafts showed MLC reactivity when exposed to BN antigens in vitro, implying that some degree of MLC reactivity is compatible with prolonged skin graft survival. These same rats also showed cytotoxic activity to BN fibroblasts in vitro regardless of their MLC status. MLC is quantitatively decreased and possibly qualitatively altered as compared to that of control W/Fu lymphocytes. The decrease was specific for the tolerated antigens. Serum from the tolerant rats inhibited cytotoxic but not normal MLC reactivity of W/Fu cells against BN antigens.

Animals

Interactions of C-reactive protein with the complement system. II. C-reactive protein-mediated consumption of complement by poly-L-lysine polymers and other polycations.

Cationic homopolymers of poly-L-lysine were found to activate complement (C) via C-reactive protein (CRP) and deplete C3 and C5 as well as early-acting C components. Maximum C consumption was obtained with polymers of 2,000-8,000 daltons; polymers of 1,700, 11,000, and 23,000 daltons were intermediate in reactivity, while L-lysine, lysyl-L-lysine, tetra-L-lysine, and polymers of 70,000-400,000 daltons lacked significant C-consuming activity. Naturally occurring polycations which consumed C in the presence of CRP included myelin basic proteins, cationic proteins of rabbit leukocytes, and both lysine- and arginine-rich histones; poly-L-arginine polymers of 17,000 but not 65,000 daltons also were C-consuming. Polycations without such reactivity included poly-L-orithine (5,000 and 165,000 daltons), egg white and human lysozymes, and Polybrene. The polycations which failed to induce C consumption via CRP, inhibited its consumption by both active polycations and by C-polysaccharide (CPS). The relative inhibitory capacity of phosphorylcholine and polycations in CPS- and polycations-CRP systems was consistent with the concept that phosphate esters and polycations react at the same or an overlapping combining site. The ability of certain polycations to activate C via CRP increases the potential for initiation of host reactions via C. The capacity of other polycations to inhibit C activation via CRP introduces a potential for physiologic or pharmacologic manipulation. These considerations would seem to expand the potential role of CRP in the initiation and modulation of the inflammatory response.

Animals