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Effect of interleukin 2 on cytotoxic effectors: I. Short-term culture of the cytotoxic effectors and the in vivo anti-tumor activity of the cultured effectors isolated from tumor site.

The effects of interleukin 2 (IL2) on the in vitro and in vivo activity of cytotoxic T cells have been studied. IL2 was produced by W/Fu rat spleen cells cultured with concanavalin A. The IL2 thus prepared gave an optimal T-cell growth-promoting effect at a concentration of 5-20% equivalents of the original preparation. In the primary syngeneic mixed lymphocyte/tumor cell cultures (MLTC) against FBL-3 tumor cells, the addition of IL2 failed to generate a cytotoxic response. However, the cytotoxic response could be generated in MLTC by addition of exogenous macrophages. On the other hand, IL2 could maintain the growth of performed cytotoxic T cells for 3 to 5 weeks. These cytotoxic T cells were generated either by in vitro sensitization (MLC or MLTC) or by in vivo sensitization of B6 mice against a syngeneic tumor FBL-3. In short-term cultures, augmentation of the cytotoxic activity was seen after 10 days' culturing with IL2. The antigenic specificity of the cytotoxic reaction was altered after 28-35 days in culture, and the effectors broadly reactive. When growing a nonadherent population of lymphocytes isolated from FBL-3 ascites tumor, supplementation with IL2 selectively promoted the growth of a T-cell population, resulting in the elimination of the contaminating tumor cells. These purified T cells were highly cytotoxic for FBL-3 cells in vitro and also possessed strong in vivo anti-tumor activity against FBL-3 cells in the adoptive transfer experiments. The present study demonstrates that short-term culture (2-3 weeks) in IL2 promotes the growth of T cells and augments their cytotoxic activity with the appropriate antigenic specificity. IL2 also promoted the selective growth of T cells isolated from tumor site and these T cells showed augmented in vitro and in vivo anti-tumor activity.

Animals

Control of CD4 effector fate: transforming growth factor beta 1 and interleukin 2 synergize to prevent apoptosis and promote effector expansion.

The signals that determine the size and duration of the primary T cell immune response are not well defined. We studied CD4 T cells at an important checkpoint in their development: when they have become effectors and are ready to rapidly mediate effector functions, both via direct interaction with antigen (Ag)-presenting cells and via cytokine production. We determined the effects of specific Ag and the cytokines interleukin (IL) 2 and transforming growth factor (TGF) beta 1 on T helper cell type 2 (Th2) effector apoptosis versus expansion. Th2-polarized effector cells were generated in vitro from naive CD4 T of T cell receptor transgenic mice, and then restimulated with or without peptide Ag plus Ag-presenting cells and cytokines. In the absence of added cytokines, effector cells cultured without Ag died of apoptosis after 4-7 d. Paradoxically, Ag both induced proliferation and high levels of cytokine synthesis and accelerated effector cell death. IL-2 directly induced proliferation of effectors, supported and prolonged Ag-induced proliferation, and partially blocked apoptosis. TGF-beta did not effect proliferation or influence cytokine secretion, but it also partially blocked apoptosis. Together, IL-2 and TGF-beta synergized to almost completely block apoptosis, resulting in prolonged effector expansion and leading to the accumulation of a large pool of specific effectors. When Ag and both cytokines were present, the effector population increased 10(4)-10(5) fold over 20 d of culture. The synergy of IL-2 and TGF-beta suggests that they interfere with programmed cell death by distinct mechanisms. Since Th2 effectors are specialized to help B cells develop into antibody-secreting plasma cells, these results suggest that the availability of Ag and of the cytokines IL-2 and TGF-beta is a key factor influencing the fate of Th2 effector cells and thus the size and duration of the primary antibody response.

Animals

Kinetic analysis of effector cell recycling and effector-target binding capacity in a model of cell-mediated cytotoxicity.

A kinetic analysis of cell-mediated cytotoxicity (CMC) at the population level based on theoretical models has been performed. This analysis considers that the binding process and the kinetics of the lytic process occur through different types of conjugates: LTn, i.e., conjugates containing one effector cell and n target cells, and LmT conjugates which contain m effector cells bound to one target cell. This allowed us to provide a quantitative description of the conjugation process, and of the binding capacities of the effector and target cells. Thus, it has been shown that these processes are governed by an equilibrium in which are involved the unbound effector and target cells, and the conjugates formed. This implies that, when the equilibrium concentrations are reached, the total number of conjugates cannot be increased from the unbound effector and target cells. However, it does not mean that the free effector cells are nonbinding, and so, when the conditions of equilibrium are perturbated (as occurs for example in CMC), all effector cells, virgin and those who have already participated in the lytic process, are able to form new conjugates. The existence of this equilibrium has also important consequences when different subpopulations are separated from an effector-target system. Thus, it explains the observation reported in the literature that, although cytometric techniques can be used to detect and count different types of conjugates, the conjugates formed cannot be separated by cell sorting (unless special precautions are taken). Finally, we have found that the number of target cells killed by one effector cell, which has been previously considered as the recycling capacity of an effector population, is in reality the result of two different mechanisms. One of these mechanisms is due to the recycling process, whereas the other (which has the same effect) is due to the multiple killing capacity of the LTn conjugates which kill more than one target cell. The average number of target cells killed per conjugate has been determined, and this allowed us to obtain the relative contributions of these two mechanisms to the total killing capacity of one effector cell. It appears that the recycling capacities of effector cell populations previously determined had been 1- to 3-fold overestimated.

Animals

Stimulation of inositol 1,4,5-trisphosphate production by peptides corresponding to the effector domain of different Rab3 isoforms and cross-linking of an effector domain peptide target.

Rab3 proteins are localized on secretory vesicles and appear to be involved in regulated exocytosis. We have previously shown that a modified peptide corresponding to the effector domain of the small molecular mass GTP-binding protein Rab3A, Rab3AAL, stimulates inositol 1,4,5-trisphosphate [Ins(1,4,5)P3] production and amylase release in digitonin-permeabilized pancreatic acini. Experiments using monoclonal antibodies reveal that the Rab3-like protein present in pancreatic acini is not the Rab3A isoform. However, since the putative effector domains of the four as yet known Rab3 proteins (A, B, C and D) differ only in the C-terminal four amino acid residues, Rab3A effector domain peptide could mimic the action of the pancreas-specific Rab3 isoform. In the present study we report that peptides corresponding to the different Rab3 isoforms stimulate both Ins(1,4,5)P3 production and amylase secretion with an order of potency Rab3B/D > Rab3AAL > Rab3A = Rab3C. For Rab3A, B/D and C effector domain peptides the concentrations causing half-maximal response (EC50) were 3, 0.2 and 3 nM for Ins(1,4,5)P3 accumulation and 0.3, 0.02 and 0.3 nM for amylase release, respectively. A Rab1A effector domain peptide, Rab1AAL, and a scrambled peptide of Rab3AAL were less potent by several orders of magnitude in eliciting these responses compared with native Rab3 effector domain peptides. None of the peptides influenced Ins(1,4,5)P3 production and amylase release in intact acini. Cross-linking of 125I-Rab3B/D peptide to pancreatic acinar membranes showed a band at 70 to 75 kDa with maximum intensity at 75 kDa. Radiolabelling of the substrates could be displaced by unlabelled Rab3B/D peptide, and to a lesser extend by Rab3A peptide, whereas the scrambled peptide of Rab3AAL had no effect. These data suggest that phospholipase C and exocytosis might be regulated by Rab3B-or Rab3D-like proteins in pancreatic acinar cells. A 75 kDa protein that preferentially cross-linked to 125I-Rab3B/D effector domain peptide is a potential candidate as an effector protein of Rab3 effector domain peptides.

Amino Acid Sequence

Effector T cell differentiation in experimental interstitial nephritis. I. The development and modulation of effector lymphocyte maturation by I-J+ regulatory T cells.

Because mice susceptible to interstitial nephritis use different effector T cells than nonsusceptible mice, we analyzed the differentiation process of the effector T cell repertoire by using an in vitro culture technique. In the presence of helper T lymphocytes, accessory cells, IL 2, tubular antigen, and precursor effector cells, both Lyt-2+ nephritogenic effector cells and L3T4+ nonnephritogenic effector cells can be initially induced in both susceptible and nonsusceptible strains within 3 days of culture. In nonsusceptible mice, however, the Lyt-2+ nephritogenic cell is inhibited from further development and disappears, whereas in susceptible mice, its presence is preserved with a resulting effect of tissue destruction. This selection of effector T cell preference is regulated by I-J+ T lymphocytes which are co-functionally expressed with effector cell expansion. Unlike precursor effector lymphocytes, however, the maturation of the regulatory process requires a subset of I-J+ accessory cells and structurally intact tubular antigen. Our findings indicate, therefore, that both susceptible and nonsusceptible mice have the potential for the expression of interstitial nephritis, but nonsusceptible mice are formally protected from autoimmunity by the regulation of lymphocyte preference.

Animals

T lymphocyte responses to non-H-2 histocompatibility antigens. I. Role of Ly-1+2+ T cells as cytotoxic effectors and requirement for Ly-1+2+ T cells for optimal generation of cytotoxic effectors.

Cytotoxic effector T cells specific for non-H-2 histocompatibility (H) antigens were examined for phenotypic expression of lymphocyte differentiation (Ly) antigens. Virtually all H-Y-specific cytotoxic effectors generated in mixed lymphocyte culture were Ly-1+2+ T cells. H-3-specific effectors comprised both Ly-1+2+ and Ly-1-2+ T cells. However, cytotoxic effectors specific for multiple non-H-2 H antigens were predominantly Ly-1-2+ T cells. The optimal generation of H-Y- and H-3-specific effectors required Ly-1+2+ T cells; optimal generation of multiple non-H-2 H antigen-specific effectors required an interaction between Ly-1+2- and Ly-1-2+ T cells. These observations suggest that the identity of the target H antigen in part determines the Ly type of responsive T cells. Our observations suggest that 2 alternative pathways of T cell response exist for non-H-2 H antigens. The first pathway involves an interaction between Ly-1+2- helper T cells and Ly-1-2+ cytotoxic effector precursors. The 2nd pathway simply involves the response of Ly-1+2+ T cells proliferating and generating H antigen-specific cytotoxic effectors.

Animals

Ribonucleotide reductase from Escherichia coli. Identification of allosteric effector sites by chromatography on immobilized effectors.

Ribonucleotide reductase is responsible for the production of deoxyribonucleotides by catalyzing the reduction of ribonucleoside diphosphates. The enzyme is allosterically regulated in a complex way by the nucleoside triphosphates, ATP, dTTP, dGTP, dCTP, and dATP. Ribonucleotide reductase consists of two nonidentical subunits, proteins B1 and B2. Both substrates and allosteric effectors bind exclusively to B1. Binding of protein B1 to dTTP or dATP covalently coupled to Sepharose and elution with concentration gradients of the different nucleoside triphosphate effectors gave information about (1) the arrangement of the effector binding sites on protein B1 and (2) the affinity of the effectors for these sites. Protein B1 thus has two classes of effector binding sites. One class binds all effectors, as demonstrated by elution of the protein from dTTP-Sepharose with dATP, dGTP, ATP, or dCTP. The second class binds only dATP or ATP, since dATP and ATP were the only nucleotides which eluted protein B1 from dATP-Sepharose. These results confirm earlier data obtained by dialysis binding experiments. The eluting concentrations obtained for the different nucleoside triphosphates in experiments with dTTP-Sepharose could be used to calculate unknown dissociation constants for protein B1 -effector binary complexes. This was possible, since a plot of the eluting concentrations vs. known dissociation constants was linear.

Allosteric Site

Comparison of the effector cells in human spontaneous cellular cytotoxicity and antibody-dependent cellular cytotoxicity: differential sensitivity of effector cells to in vivo and in vitro corticosteroids.

The effector cells mediating antibody dependent cellular cytotoxicity (ADCC) and spontaneous cellular cytotoxicity (SCC) in humans have been reported to possess similar characteristics. Multiple cell separation techniques were employed in an attempt to physically separate and distinguish the effector cells in these two types of cellular cytotoxicity. Subpopulations of mononuclear cells obtained by a variety of fractionation procedures which either enriched or depleted monocytes, lymphocytes bearing a receptor for sheep erythrocytes (SRBC), a receptor for complement (CRL) or an Fc receptor for IgG always had similar effects on both ADCC and SCC. Aggregated gamma globulin blockade of Fc receptors produced similar dose-dependent depressions of ADCC and SCC. Despite our inability to physically separate the effector cells of ADCC and SCC, administration of in vivo dexamethasone caused a relative increase in ADCC but a profound decrease in SCC. Furthermore, in vitro dexamethasone in pharmacologic and suprapharmacologic concentrations caused no change in ADCC but significantly decreased SCC. This study demonstrates that although the effector cells cannot be physically separated, ADCC and SCC are differentially sensitive to corticosteroids and are hence functionally distinct either on the basis of different subsets of effector cells with similar surface markers or different mechanisms of cytotoxicity by the same effector cell.

Adrenal Cortex Hormones

Neutralization of activity of effector protein by monoclonal antibody: formulation of antibody dose-dependence of neutralization for an equilibrium system of antibody, effector, and its cellular receptor.

Binding of an antibody to an effector protein will not necessarily inactivate it totally. In order to incorporate this into mathematical expressions of neutralization reaction between a monoclonal antibody and an effector which acts on cells through receptor binding, a static equilibrium system was considered that consists of effector, receptor and antibody, allowing formation of the ternary complex. A formula was derived for the antibody dose-dependence of neutralization, which was qualitatively similar to that found experimentally for monoclonal antibodies to interferon. According to the formula, the extent of neutralization, N, will approach a saturation value N infinity at high antibody concentrations, instead of increasing indefinitely, as is the case with conventional antibodies; the value N infinity is determined by the degree of reduction, upon antibody binding, of the effector's affinity to the receptor (and/or by the ability of antibody to inhibit the effector action subsequent to receptor binding). On the other hand, experimental data in the region of small N's will allow one to estimate the effector-antibody association constant.

Antibodies, Monoclonal

Interferon-induced NK augmentation in humans. An analysis of target recognition, effector cell recruitment and effector cell recycling.

By combining a single-cell cytotoxicity assay in agarose with estimations of the maximal natural killer (NK) cell potential (Vmax) by 51Cr release, the mechanism behind interferon augmentation of human NK cells were analysed. The number of target-binding cells (TBCs) the fraction of active TBCs and NK cell recycling were studied after short-term interferon treatment. The results demonstrate a dual effect of interferon on human NK cells: effector cell recruitment and increased effector cell recycling. Both of these variables were increased when NK cells were tested against the standard target K-562 and against Daudi and BJAB cells, derived from B-type lymphomas. However, when T cell lines derived from acute lymphocytic leukaemia (Molt-4 and 1310) were used as targets, a larger fraction of active NK cells were found among untreated TBCs, whereas interferon treatment only resulted in increased effector cell recycling and not in effector cell recruitment. No increase in TBCs after interferon treatment could be detected with any cell line tested. The difference seen between T and non-T cell lines with regard to interferon-induced effector cell recruitment is discussed in relation to known characteristics of the human NK system.

Cell Fractionation

The derivation of binding parameters from effector and target conjugate frequency data using linear and non-linear data-fitting transformations. Application of such transformations to the NK-MOLT4 and NK-K562 effector-target systems.

Effector-target conjugation is described quantitatively by binding isotherms which are characterized by three parameters, the maximum effector and target conjugate frequencies, alpha max and beta max, and the dissociation constant of the conjugates formed, KD. In this paper the application of non-linear data-fitting techniques, as well as linear transformations of the binding isotherms that permit us to use standard regression analysis, has been tested to calculate estimates of these parameters in the NK-MOLT4 and NK-K562 effector-target systems. Both unweighted and weighted data were used to calculate alpha max, beta max and KD for six different donors which were used as a source of NK cells. The results obtained have shown that these regression methods are useful for revealing potential disparities between binding efficiencies in effector-target systems.

Adult

Enzyme kinetic and spectroscopic studies of inhibitor and effector interactions with indoleamine 2,3-dioxygenase. 2. Evidence for the existence of another binding site in the enzyme for indole derivative effectors.

To probe the active site of the heme protein indoleamine 2,3-dioxygenase, the effects of 3-indoleethanol (IET) (or tryptophol), one of the known indole derivative effectors, and indole (IND) on the catalytic (Vmax, Km) and spectroscopic properties (optical absorption and CD) of the enzyme were investigated. Assays were performed with the substrate L- or D-tryptophan (Trp) and an ascorbic acid-methylene blue cofactor system at 25 degrees C. This study has shown that, at millimolar concentrations, both IET and IND lower considerably the Km value for D-Trp by approximately 25% and approximately 60%, respectively, at pH 7.0, while neither affects the Km value for L-Trp. Interestingly, however, these effectors exert opposite effects with respect to each other on the Vmax values for both D-Trp and L-Trp: IET enhances the Vmax values by 40-60% while IND lowers them by 12-24%. These effects of IET and IND on the Vmax values may be attributed to the shift in the ferric (inactive) enzyme----ferrous (active) enzyme equilibrium either to the right (IET) or to the left (IND) caused by the binding of these effectors to the enzyme in the steady state of the catalytic reaction. Both effectors induce clearly detectable spectral changes, especially notable in CD spectra, upon binding (in a 1:1 molar ratio, Kd = 10(-4) to 2.5 X 10(-3) M) to the ferrous enzyme and its complexes with O2, CO, and NO, both in the presence and in the absence of L-Trp.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The secondary cytotoxic response to allogeneic cells: the specificity of secondary cytotoxic effectors differs from that of primary effectors.

Following priming with alloantigen in vivo, a secondary cytotoxic activity of AKR mice (H-2k) was generated by in vitro stimulation with the same alloantigen. Such secondary effectors could lyse not only targets of a sensitizing haplotype but also third-party targets unrelated to sensitizing or responding cells. Such cross-reactive cytotoxicity of AKR secondary effectors were demonstrated not only by stimulation with C57BL/6 (H-2b) cells but also with C3H/He (H-2k) cells. It was observed that such cross-reactive secondary cytotoxicity was mediated by T lymphocytes, and required protein synthesis in secondary culture. These results suggested the possibility that the antigen receptors on such secondary cytotoxic effector cells have different recognitive specificity from that on primary cytotoxic effector cells.

Animals

Characteristics of the effector cells mediating cytotoxicity against antibody-coated target cells. I. Phagocytic and non-phagocytic effector cell activity against erythrocyte and tumour target cells in a 51Cr release cytotoxicity assay and [125I]IUdR growth inhibition assay.

Both phagocytic and non-phagocytic effector cells were able to kill rabbit antibody-coated chicken erythrocytes (CRBC) while only non-phagocytic effector cells were active against alloantibody-coated SL2 lymphoma. In addition to the variation in susceptibility of erythrocyte and tumour target cells to various effector cell populations, it was found that different tumour cells can vary markedly in their ability to be killed by non-immune spleen cells in the presence of antibody. It is postulated that both the type of antibody and certain characteristics of the cell membrane are important in determining whether target cells are susceptible to antibody-dependent cell-mediated cytotoxicity detected by the 51Cr release assay. It was also demonstrated that alloantibody-coated P-815-Y mastocytoma, which showed very little evidence of cytotoxicity in the 51Cr release assay, was markedly inhibited in its ability to incorporate [125I]IUdR after incubation with antiserum and non-immune spleen cells. This growth inhibition in the absence of cytotoxicity, or cytostasis, is discussed in relation to the potential mechanisms of target cell damage, and in the light of recent observations (Plata, Gomard, LeClerc and Levy, 1974; Newlands and Roitt, 1975) that cytotoxicity and growth inhibition assays detect different effector cell populations in tumour-bearing animals.

Animals

Generation of effector cells from T cell subsets. II. Lyt 123 T cells contain the precursors for all primary cytotoxic effector cells and for cells involved in the regulation of cytotoxic responses.

Mixed responder populations, consisting of selected Lyt-2,3+ cells and unselected T cells from two congenic mouse strains differing in their Lyt-2,3 alleles, were used to study the role of Lyt-1,2,3+ cells in the generation of cytotoxic effector cells in vitro. The fact that, under these conditions, all primary alloreactive and H-2-restricted killer cells ar generated from the unselected T cell population and not from the selected Lyt-2,3+ subset is demonstrated. Isolated, unsensitized Lyt-2,3+ cells are able to produce primary alloreactive cytotoxic T lymphocytes (CTL) when incubated with alloantigen alone, but appear to be suppressed in the pesence of Lyt-1,2,3+ cells. In contrast, mixtures of Lyt-2,3+ cells selected from C57BL/6 T cells previously primed to alloantigen in vitro, and unselected T cells from the Lyt-2,3-congenic partner after exposure to the same antigen give rise to cytotoxic effector cells which derive mainly from the primed Lyt-2,3+ cell pool and not from the unselected T cell population. Both populations were able to generate CTL when sensitized separately with the alloantigen. The data suggest that Lyt-1,2,3+ cells contain all primary precursors for both H-2 restricted and alloreactive killer cells, as well as lymphocytes suppressing the formation of cytotoxic effector cells from unsensitized Lyt-2,3+ cells. The Lyt-2,3+ cell pool most likely contains the secondary CTL precursors. In addition, the same antigen-primed Lyt-2,3+ pool contains suppressor cells which inhibit the formation of primary CTL from Lyt-1,2,3+ cells. The data are discussed with respect to the regulation of cytotoxic responses.

Animals

Glycoproteic nature of surface molecules of effector cells with lymphokine-activated killer (LAK) activity. Evidence that T11, T8 or T3 molecules are not involved in tumor-cell lysis by LAK effector T cells.

Human peripheral blood mononuclear cells cultured in the presence of interleukin-2 (IL-2) acquire the capability of lysing NK-resistant fresh tumor target cells. In an attempt to delineate the surface structure(s) present on the effector cells, the latter were first treated with different amounts of pronase and neuraminidase. The effect of the enzymes on cytolytic activity against fresh melanoma cells was evaluated and compared with the NK-like activity against K562 target cells of the same effector population. At a pronase concentration of 0.01 mg/ml, no inhibition of NK-like activity was detected, whereas LAK activity was inhibited by more than 75%. In addition, neuraminidase had no effect on NK-like activity, even at 1 U/ml, whereas as little as 0.03 U/ml inhibited LAK activity by more than 75%. Metabolic inhibition of N-linked glycosylation with Tunicamycin prevented the generation of LAK activity, even when added late (18 hr before termination of the culture). Tunicamycin, on the other hand, had no effect on the boost of NK activity induced by IL-2. Provided that LAK activity can also be generated in T-cell (E-rosetting) populations, in the presence of adherent cells, we analyzed the inhibitory activity of monoclonal antibodies (MAbs) to T11, T3 and T8 molecules. While all these MAbs strongly inhibited the specific target cell lysis by alloreactive CTLs, they had no effect on the LAK activity.

Antigens, Differentiation, T-Lymphocyte

Autoimmune effector cells. Part 10: Effector cells of autoimmune encephalomyelitis in healthy nonimmune rats.

This paper describes our ongoing investigation of the activation of effector cells of experimental allergic encephalomyelitis (EAE) from nonimmune Lewis rats by sequential culture of spleen cells (SpC) with myelin basic protein (BP) and transfer to syngeneic recipients. We show that SpC initiate the effector cell activation process, whereas thymocytes (Thy) are ineffective. Intermediary recipients of BP-cultured SpC are 'primed' for EAE, but do not develop the disease; this primed state persists for at least 2 months. No evidence was found that suppressor cells account for the failure of the intermediary recipients to develop EAE. The activation process can be inhibited by including monoclonal anti-Ia antibody in the primary culture, indicating that multiple triggering signals are involved in the activation of autoreactive T cells.

Animals

Lectin-driven maturation of cytotoxic effector cells: the nature of effector memory.

In an attempt to define further the activation of effector T-cell function with concanavalin A (Con A), we examined the ability of Con A to generate effector memory in mouse lymph node cells in vitro. In the course of these studies, it became necessary to define parameters by which memory could be defined. These parameters include length of time of exposure to signal required to generate full cytotoxic function; time of onset and kinetics of blast cell formation; requirement for DNA synthesis; sensitivity to the drug 5'-bromodeoxyuridine; and kinetics of the cytotoxic response to alloantigen. By these criteria, mouse lymph node cells exposed 12 days previously to Con A behave qualitatively differently from unprimed mouse lymphocytes. We found that the time of onset and kinetics of DNA synthesis could not be used to distinguish primary and secondary cytotoxic responses. We propose that the parameters defined in these stidues can be applied generally in determining whether a given cytotoxic response involves primed (memory) or unprimed cells.

Animals