An increase in cytosolic free calcium ([Ca2+]i) is one of the earliest events to occur in T lymphocytes following stimulation of the transmembrane T cell receptor/CD3 complex (TCR/CD3). This [Ca2+]i mobilization has been found to be sensitive to intracellular thiol redox status, which in turn is modulated by cellular glutathione (GSH) content. We have previously reported that GSH depletion, by treatment with either the α, β-carbonyl diethyl maleate or the aromatic halo-compound 1-chloro-2,4-dinitrobenzene, correlates with decreased [Ca2+]i mobilization in anti-CD3 monoclonal antibody (mAb)-stimulated human peripheral blood lymphocytes (HPBL). This prompted us to determine whether this correlation between GSH content and TCR/CD3 signal transduction capability was also present in murine lymphocytes, since the mouse model is often used as a surrogate for the human immune system. The results presented here demonstrate that in vitro treatment with the α, β-carbonyl phorone dose-dependently depletes intracellular GSH in murine splenic T lymphocytes. Both CD4+ and CD8+ T lymphocytes depleted of GSH by greater than 40% were found to have a decreased [Ca2+]i mobilization following anti-CD3 mAb stimulation. Similar to what has been described for HPBL, these results indicate that the cellular GSH status influences the initial response of murine T lymphocytes to TCR/CD3 stimulation.
Glutathione (GSH) is tire most important cytosolic antioxidant. Since GSH levels are decreased with age, we hypothesized that T-lymphocytes from old mice would be more sensitive to oxidative stress. T-lymphocytes from young and old mice were exposed to hypoxanthine/xanthine oxidase, and lymphocyte viability, proliferation, GSN content, and calcium signaling were measured. Before exposure, proliferation of T-lymphocytes from young mice was greater than that of old-following exposure, the converse was true. This was in spite of the fact that old mice had lower total GSH levels and greater levels of glutathione disulfide. After oxidative challenge, intracellular calcium responses to anti-CD3 were decreased in naive T-lymphocytes from all mice, while memory lymphocytes were less affected. Higher proportions of memory lymphocytes in old mice resulted in their greater overall preservation of lymphocyte function following oxidative injury, contrary to expectations that lower lymphocyte GSH content with age would increase susceptibility to oxidative stress.
Natural killer (NK) cell activity was evaluated in three groups of Macaca nemestrina that varied with respect to SAIDS D retrovirus serotype 2 (SRV-2/W) and viremic status. Target cells used were Raji and K562 cells. No significant differences (ANOVA) in mean NK activity were detected among the three groups of animals studied. Using Raji targets, mean LU30/106 ± SEM was 6.3 ± 1.6 for seronegative (V-Ab−) animals, 7.3 ± 1.5 for seropositive (V-Ab+) animals, and 10.2 ± 3.5 for persistently viremic (V + Ab−) animals. Using K562 targets, mean LU30/106 was 7.6 ± 1.7 for seronegative (V-Ab−) animals, 6.5 ± 2.5 for seropositive (V-Ab+) animals, and 5.1 ± 1.9 for persistently viremic (V+Ab−) animals. Percentage blood CD16+ and CD8+cells also were not different in the three groups of animals. NK activity did not always correlate with percentage of CD16+ or CD8+ cells in peripheral blood at the time the assays were done. In persistently viremic animals, there was a strong positive correlation between percent CD16+ and CD8+ cells and NK activity using K562 cells but not Raji cells. Depletion experiments indicated that lysis was mediated by both CD8+ and CD16+ cells with both Raji and K562 cells. However, Raji targets were a better indicator of killing mediated by CD16+ cells. Our studies indicate that M. nemestrina may be classified as high or low responders with regard to NK activity, and there was no correlation with SRV-2/W viral or antibody status. Additionally, our results suggested that group housing of M. nemestrina was usually associated with increased NK activity. In conclusion, studies of NK activity in M. nemestrina should consider target cells used, phenotype of effectors, endogenous (high or low) levels of NK activity in individual animals, and housing conditions. © 1996 Wiley-Liss, Inc.
The intracellular fluorescence level of cells stained continuously with monochlorobimane was monitored by flow cytometry in order to assess the initial rate of glutatione to monochlorobimane conjugation as a measure of glutathione S-transferase activity. In addition to a rapid initial increase and a plateau level, a decline in fluorescence intensity was found upon prolonged flow cytometric monitoring. Exposure to probenicid, an inhibitor of an ATP-dependent organic anion pump, prevented this decrease. Incubation with vanadate and verapamil was without effect. Thus, extrusion of fluorescentglutathione-conjugate perturbs the proportionality between initial glutathione level and monochlorobimane-dependent fluorescence intensity. Monitoring by flow cytometry the decrease in monochlorobimane-dependent fluorescence may be useful to detect multidrug resistant cells.
Cross-linking of the T-cell receptor (CD3) induces activation of tyrosine kinases and the subsequent phosphorylation of intracellular protein substrates. We examined whether early events in signal transduction through CD3 or CD3 x CD4 receptor ligation were altered in aged murine T-lymphocytes. Both calcium mobilization and tyrosine phosphorylation of phospholipase C gamma 1 (PLC gamma 1) were decreased in T-lymphocytes from old mice. In addition, there was less tyrosine phosphorylation of a 35/36 kDa protein both in whole cell lysates and in PLC gamma 1 immunoprecipitates from old mice. This 35/36 kDa phosphoprotein binds specifically to the SH2 domains of PLC gamma 1. Using a fusion protein containing the SH2 domains of PLC gamma 1 and human IgG1 heavy chain, we identified three additional proteins that bind to the SH2 domains which were tyrosine phosphorylated following CD3 x CD4 ligation to a lesser degree with age. The tyrosine phosphorylation of two phosphoproteins binding to a fusion protein consisting of the SH2 domains of GAP (ras GTPase-activating protein) and human IgG1 heavy chain was also reduced with aging. The observed binding to SH2 domains was thiol redox sensitive. Thus, decreases in antioxidants with age may be responsible for inhibitory effects on PLC gamma 1-phosphatidylinositol signaling through redox regulation of tyrosine phosphoproteins.
The influence of aging and dietary restriction on increase in intracellular free calcium ([Ca2+]i) of CD4+ lymphocytes from Macaca mulatta was examined after stimulation with anti-CD3 mAb. We used a flow cytometric assay with the dye indo-1 and either direct or reciprocal immunofluorescent staining to identify CD4+ cells. After stimulation with anti-CD3 mAb, intracellular free calcium responses were reduced in CD4+ lymphocytes from old male and female ad libitum fed monkeys compared to young and adult male or female monkeys. Old female monkeys had significantly lower [Ca2+]i than did old male monkeys. The reduced responses were in part related to a decreased percentage of responding cells. Dietary restriction of males over a four-year period did not alter [Ca2+]i response compared to ad libitum fed male monkeys. Female monkeys of all ages (which were restricted only for four months) also had similar [Ca2+]i responses to ad libitum fed controls. Our data suggest that age-related changes in [Ca2+]i responses are similar between humans and M. mulatta, and that over these intervals, no effects of caloric restrictions can be detected.
We previously discovered that mutant anemic mice (sphha/sphha) show increased numbers of cycling lymph node T lymphocytes when analyzed by pulse and continuous infusion of tritiated thymidine. We have now further analyzed this in vivo phenomenon by evaluating the in vitro proliferative response of anti-CD3 activated lymphocytes from anemic mice using flow cytometric cell cycle analysis with 5′-bromodeoxyuridine and Hoechst dye. We determined that sorted CD4+ and CD8+ T lymphocytes from anemic mice have significantly greater proliferative capacity when compared with syngeneic control (+/+) mice (P < 0.001). In order to explain this increased growth capacity, we examined whether these cells exhibit differences in cell-surface phenotype (Pgp-1 and IL-2 receptor expression), activation state, or transmembrane signaling, or alterations in accessory cells or cytokines. Increased proliferation of T cells from anemic mice was associated with a larger percentage of T cells expressing IL-2R (p55 or CD25) at 24 and 48 hr after activation. Increased proliferative capacity was not associated with differences in activation state, Pgp-1 phenotype, transmembrane signaling, accessory cells, or cytokines. The mechanism for the abnormally high proliferative rate of T cells from anemic mice remains unclear, but we suggest that this mutant mouse may provide an important model for further studies on the molecular basis of T-cell replication.
The intracellular low-molecular-weight thiol glutathione (GSH) is an important scavenger of free radicals and plays a role in the maintenance of the redox status of protein sulfhydryl groups. We have previously shown that human peripheral blood lymphocytes sorted on their basal GSH content proliferate proportionately to their GSH levels, and that an early event in lymphocyte activation appeared to be dependent on GSH. We have now analyzed transmembrane signal transduction in cells treated with 1-chloro-2,4-dinitrobenzene (CDNB), a GSH-depleting agent. Transmembrane signal transduction was measured as changes in intracellular free calcium and in protein tyrosine phosphorylation after stimulation with anti-CD3 monoclonal antibody. The results show a CDNB dose-dependent reduction in GSH content, the magnitude of intracellular free calcium mobilization, and the extent of tyrosine phosphorylation of several proteins, including phospholipase C-gamma 1. This suggests a role for GSH and/or protein thiol redox status in one of the earliest events controlling the ability of lymphocytes to respond to important proliferative signals in their environment and implies that agents which deplete lymphocyte GSH may be immunosuppressive through effects on CD3/T cell receptor-dependent transmembrane signal transduction.
A colony of sph(ha)/sph(ha) mice with congenital hemolytic anemia and an abnormality in erythrocyte spectrin assembly was screened to determine the cause of premature death. Sph(ha)/sph(ha), mice have decreased life span, with 50% of animals dying by 6 months of age. The phenotype of these mutant mice includes moderate anemia (hematocrit: 21 to 28%), reticulocytosis, leukocytosis, lymphocytosis, extensive extramedullary hematopoiesis in spleen and liver, lymph node hyperplasia and membranoproliferative glomerulonephritis. With increased surveillance of this mouse colony, 20 clinically sick anemic mice were evaluated (complete blood counts and cultures of blood), euthanized and necropsied. Compared with anemic mice without clinical signs of disease, sick anemic mice had significantly higher white blood cell counts with only 4 (20%) of 20 animals being severely anemic (hematocrit: 4 to 8%). Blood from 11 (45%) of 20 animals was culture-positive for Pasteurella pneumotropica, Enterococcus, and/or Escherichia coli. In addition to the usual lesions in sph(ha)/sph(ha) mice, sick anemic mice had pneumonitis (95%) with thrombosis and infarction (80%) of one or more organs (spleen, myocardium, pancreas, liver, or bone marrow). The thrombotic tendency that accompanies the chronic hemolytic anemia in sph(ha)/sph(ha) mice, as well as the other clinicopathologic changes in these mutant mice, bears a striking resemblance to some poorly understood sequelae in human patients with sickle cell anemia. This mouse model may be useful in studying the pathophysiology of complications associated with sickle cell anemia in humans.
A preliminary investigation of immune host response was conducted in a group of fetal alcohol-exposed nonhuman primates (Macaca nemestrina) who were part of a broader ongoing study of ethanol teratogenicity. The mothers of the offspring received weekly oral doses of ethanol (1.8 g/kg) for the first 3 or 6 or the entire 24 weeks of gestation. A control group received sucrose solution weekly throughout pregnancy. Four of the 18 ethanol-exposed animals (22%) died or were euthanized after infectious disease or failure to thrive during the first year of life; none of the seven control animals died. This imbalance in survival prompted the present review of immune function in the remaining offspring. Parameters assessed included: (1) white blood cell count (WBC), (2) peripheral blood leucocyte subsets (CD4+, CD8+, CD20+, and CD11c+), (3) T-cell proliferation after activation with phytohemagglutinin (PHA), staphylococcus enterotoxin B (SEB), and tetanus toxoid (TT), (4) phagocytic activity of monocytes, and (5) serum immunoglobulin levels and serum antibody titers after TT vaccination. Mean T-cell proliferation to TT was significantly decreased (p = 0.01) in all ethanol-exposed animals relative to controls, with near-significant decreases (p = 0.06) in response to SEB in the ethanol-exposed animals. Lymphocyte proliferation in response to PHA was not altered. Ethanol-exposed animals had significantly lower TT titers than controls after initial vaccination and booster. WBC, leukocyte subsets, serum immunoglobulins, and monocyte phagocytic activity were not significantly different from control values. These preliminary observations suggest that T-cell proliferation and antigen-specific memory responses may be altered in offspring exposed to weekly doses of ethanol in utero and warrant further evaluation for confirmation.