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V Paetkau

Publications and source records attributed to V Paetkau.

At least 19 recordsLinked to original sources

A novel immunosuppressive factor in human colostrum.

Human colostrum contains a factor that inhibits the induction of interleukin 2 (IL2) in T lymphocyte cell lines (colostrum inhibitory factor, CIF). In PMA-stimulated EL4.E1 cells, inhibition is the result of blocking the accumulation of IL2 mRNA. Human colostrum contains on the order of 100 U/ml of CIF activity, where 1 U/ml inhibits 50% of the IL2 response. Transient acidification to pH 3.0 increased CIF activity severalfold. Although it resembles TGF beta in some respects, antisera against TGF beta neutralized 10% or less of the CIF activity in human colostrum. Furthermore, whereas authentic TGF beta blocked the induction of IL2 by PMA-plus-calcium-stimulated cells by only about 50%, CIF inhibited it completely. A similar CIF activity was also detected in bovine colostrum, but not in normal bovine milk.

Animals

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Animals

An activation-dependent, T-lymphocyte-specific transcriptional activator in the mouse mammary tumor virus env gene.

Transcription of the complete mouse mammary tumor virus (MMTV) proviral genome in mouse cells is controlled by a strong promoter in its long terminal repeat. In the mouse T lymphoma EL4, there is a second, activation-dependent transcriptional initiation site within the envelope (env) gene, from which a short mRNA is generated, encoding the open reading frame of the long terminal repeat. We now report the isolation of a segment of the MMTV env gene (called META, for MMTV env transcriptional activator) which has the expected transcription-activating properties seen in EL4.E1 cells. Namely, it induces activation-dependent, T-lymphocyte-specific transcription of a chloramphenicol acetyltransferase reporter gene. It is active in mouse or human T-helper lymphocyte lines when they are stimulated to transcribe lymphokine genes but is inactive in unstimulated T-helper cells, fibroblasts, a cytotoxic T-lymphocyte line, and a mastocytoma cell line. Its activity is inhibited by cyclosporin A, a specific inhibitor of lymphokine transcription. Several forms of the META have been isolated from EL4.E1 cells, a mouse T-helper cell hybridoma, and from BALB/c spleen cells. Linked to the heterologous thymidine kinase promoter, a 400-bp portion of it is an inducible, orientation-independent, and cyclosporin A-sensitive transcriptional activator in T-helper cells.

Animals

Human colostrum contains an activity that inhibits the production of IL-2.

The effect of human colostrum on T cell immune function was investigated. Colostrum inhibited the proliferation of human T cells activated by allogeneic, concanavalin A (Con A) or phytohaemagglutinin (PHA) stimulation. Colostrum also inhibited the production of IL-2 by Con A-activated human peripheral blood T cells and by Con A-activated Jurkat cells, a human T lymphoma line. Similarly, human colostrum inhibited the production of IL-2 by EL4 cells, a murine thymoma line, when stimulated with phorbol myristate acetate. The inhibitory activity was not cytotoxic and could not be neutralized by antibody to transforming human growth factor beta.

Cell Survival

IL-4 potentiates the IL-2-dependent proliferation of mouse cytotoxic T cells.

In addition to the regulation of B lymphocyte growth and differentiation, the cytokine IL-4 (BSF-1) exerts effects on T lymphocytes and other bone marrow-derived lineages. We show here that recombinant mouse IL-4 synergizes with low levels of IL-2 to increase the yield of cytotoxic activity in a primary MLR, and the proliferation of both cloned IL-2-dependent CTL lines and cells obtained from a primary MLR. IL-4 did not induce the proliferation of any of several cloned CTL cell lines on its own. It also did not replace IL-2 in stimulating the growth or reactivation of quiescent, antigen-dependent CTL clones. However, IL-4 was synergistic with IL-2 after reactivation of the quiescent cells with antigen plus IL-2. Enhancement by IL-4 of the IL-2-driven proliferation of an antigen-independent line was blocked by the addition of anti-IL-4 monoclonal antibody. Although incubation of the CTL clones with IL-4 or with IL-2 plus IL-4 induced a transient increase in the expression of the mRNA encoding the 55 kDa IL-2 receptor, no change in the number or affinity of IL-2 receptors because of IL-4 was detected. This suggests that IL-4 does not potentiate the IL-2 response by altering IL-2 receptor levels. Instead, we propose that the synergistic effect of IL-4 is mediated by a different signalling mechanism from that used by IL-2.

Animals

Development of precytotoxic T cells in cyclosporine-suppressed mixed lymphocyte reactions.

Cyclosporine (CsA) blocked the generation of cytolytic activity in a primary MLR of mouse spleen cells. As expected from the known mechanism of action of this drug, it also blocked the accumulation of IL-2 during the MLR. Addition of human rIL-2 did not overcome the inhibition of CTL generation, even when it was added daily to keep its level similar to that produced in a normal MLR. Daily addition was necessary, because the CsA-inhibited MLR consumed IL-2, either by utilization or degradation. The outcome of a 5-day MLR in the presence of CsA (CsA-MLR) depended on whether or not IL-2 was continuously present. In the presence of IL-2, there was no generation of CTL activity, probably because such cultures contained IL-2-dependent suppressive elements described previously. However, when day 5 CsA-MLR cells generated in the absence of IL-2 were washed and recultured with human rIL-2, there was a burst of CTL activity, with a more than 50-fold increase in alloantigen-specific cytotoxicity within 24 to 48 h. This increase is not explainable simply by the proliferation of existing effector CTL. The noncytotoxic cells produced in an MLR in the presence of CsA, and which can be rapidly activated to cytotoxic effector cells by IL-2, are termed "precursor-effector CTL" (peCTL). They could be detected by day 3 of a primary CsA-MLR culture. Their conversion to effector CTL by IL-2 was not inhibited by CsA. Exposure of peCTL to IL-4 also generated CTL activity, to a somewhat lesser degree than IL-2, but the IL-4-induced activation was inhibited by CsA, suggesting that it depended on the induction of another CsA-sensitive lymphokine. The intracellular levels of mRNA encoding the CTL-specific serine esterases CCP1 and CCP2 (granzymes B and C, respectively) increased rapidly during the IL-2-driven conversion of peCTL to effector CTL. This study demonstrates that in the presence of CsA precursors for CTL can accumulate, and that these can be rapidly converted to cytotoxic effector cells by IL-2.

Animals

Deletion of carboxy-terminal residues of murine granulocyte-macrophage colony-stimulating factor results in a loss of biologic activity and altered glycosylation.

A deletion mutant of murine granulocyte-macrophage colony-stimulating factor (GM-CSF) which differs in primary structure from native GM-CSF in the carboxy-terminal 11 amino acids was prepared. Four amino acid residues are mutated and the seven terminal residues including Cys-118 are deleted. Supernatants from COS-1 cells transfected with this deletion mutant (GM-CSF(del] showed a 3000-fold decrease in the ability to stimulate bone marrow stem cells to proliferate and differentiate into granulocytes and macrophages in vitro. Northern blot analysis using poly(A)+ RNA extracted from the transfected cells showed equal accumulations of GM-CSF and GM-CSF(del). Transfection with full-length GM-CSF followed by immunoprecipitation of metabolically labeled supernatant proteins with rabbit anti-rGM-CSF antiserum yielded predominantly the 23-kDa, fully glycosylated form and small amounts of both a 29-kDa form and the 18-kDa non-N-glycosylated form. Transfection of the GM-CSF(del) mutant and immunoprecipitation revealed a large, diffuse band on sodium dodecyl sulfate--polyacrylamide gel electrophoresis with a molecular weight of about 29 kDa. Digestion of the immunoprecipitated 29-kDa species with N-glycanase converted the 29-kDa form into two forms of about 23 and 18 kDa, suggesting that the increase in molecular weight of the deletion mutant protein resulted from hyperglycosylation. Adding tunicamycin to the culture medium of cells transfected with GM-CSF(del) also yielded a single non-N-glycosylated species of about 18 kDa, but secretion was at a significantly lower level than either the 29-kDa hyperglycosylated GM-CSF(del) protein from non-tunicamycin-treated cells or the 18-kDa non-N-glycosylated full-length GM-CSF from tunicamycin-treated cells. Since very recent scanning-deletion analysis indicates that there is a critical region for activity near Cys-118 and that Cys-118 is necessary for maximal activity, we conclude that the Cys-118 residue is necessary for proper glycosylation and maximal biologic activity of GM-CSF.

Amino Acid Sequence

Transcriptional regulation of two cytotoxic T lymphocyte-specific serine protease genes.

The expression of two serine proteases is induced by antigenic stimulation in cytotoxic T lymphocytes. Using nuclear run-on analysis the increase in steady state mRNA level has been shown to correspond to transcriptional activation. However, the two genes appear to be sequentially rather than coordinately induced. Both genes were shown to be more sensitive to DNase I digestion than a beta-globin gene in cytotoxic T cells. In addition, for the cytotoxic cell protease 1 gene the 5' region of the gene was more sensitive than the 3' end. Two DNaseI hypersensitive sites were seen in the 5' flanking sequences of both genes. The DNA sequences of the upstream regions of both genes were determined and compared. Although the two flanking sequences are overall quite dissimilar, there are short regions which are shared between the two CTL-protease genes. A number of these have been implicated in regulating the expression of other T cell genes.

Animals

Cyclosporine blocks the activation of antigen-dependent cytotoxic T lymphocytes directly by an IL-2-independent mechanism.

The immunosuppressive drug Cyclosporin A (cyclosporine) inhibits the reactivation of quiescent Ag-dependent CTL in the presence of IL-2. Both proliferation and the regeneration of cytotoxicity are inhibited. The cytotoxic cells that are inhibited are Ag dependent for activation, whereas derived, Ag-independent, but still IL-2-dependent, cytotoxic cells are insensitive to cyclosporine. Cyclosporine also directly inhibits the effector phase of the cytotoxic cells, although not completely. The generation of primary CTL in mixed cultures was also blocked by cyclosporine in the presence of IL-2, in a time-dependent way that indicated that the sensitive time was early during the cultures. The CTL generated in primary cultures were significantly inhibited by cyclosporine in the assay, but this inhibition was less than for the cloned CTL lines.

Animals

The role of IL-5 in IgA B cell differentiation.

IL-5 enhances secretion of IgA by B cells. The stage of B cell differentiation at which IL-5 enhances IgA secretion and the mechanism by which it exerts this effect are unknown. We examined these issues by separating Peyer's patch (PP) B cells into membrane IgA (mIgA)-positive and mIgA-negative cells with panning or cell sorting. When LPS was used to activate these cells, mIgA-positive PP B cells were induced by IL-5 (either as crude T cell supernatant or rIL-5 to secrete large amounts of IgA. In contrast mIgA-negative PP B cells showed no significant amount of IgA secretion with IL-5. In addition, rIL-5 did not cause expression of mIgA by mIgM-bearing B cells. The mechanism involved in enhancement of IgA secretion was evaluated by utilizing an ELISPOT assay to quantitate IgA secreting cells. Both unsorted PP B cells and mIgA-positive PP B cells, when incubated with IL-5, showed an increase in the number of IgA-secreting cells that was proportional to the increase in total secreted IgA. However, LPS-activated PP mIgA-positive B cells, when incubated with rIL-5, showed no increase in proliferation, as measured by [3H]thymidine incorporation indicating that the increase in IgA-secreting cells after incubation with IL-5 occurred not as a result of proliferation but rather through promotion of terminal differentiation. Thus, IL-5 acts as a differentiation factor on B cells which have already undergone isotype switch to IgA B cells, promoting differentiation into IgA-secreting cells with resultant increased IgA secretion.

Animals

Mechanisms regulating the level of IL-2 mRNA in T lymphocytes.

IL-2 mRNA has a t1/2 of 1 to 2 h in T lymphocyte cell lines and in activated human PBL. Human Jurkat cells show a rapid increase of IL-2 mRNA on induction of IL-2 synthesis, followed by an equally rapid decline 4 to 6 h later. The decline occurs despite a high rate of synthesis, and appears to be due to an enhanced rate of IL-2 mRNA degradation. The degradation of IL-2 mRNA is selectively sensitive to cycloheximide and actinomycin D, inhibitors of protein and RNA synthesis, respectively. IL-2 mRNA levels in mouse EL4.E1 T lymphoma cells, and in activated human PBL, decline rapidly on removal of the inducing agents, indicating that transcription continues only as long as the activating signal is present. The transience of IL-2 mRNA is seen as an important property of a transiently acting immunoregulatory factor.

Animals

Phorbol diester-inducible, cyclosporine-suppressible transcription from a novel promoter within the mouse mammary tumor virus env gene.

The mouse T-cell lymphoma cell line EL4.E1 constitutively synthesizes mouse mammary tumor virus (MMTV) transcripts encoding either the entire proviral genome or segments of it. In addition to these conventional mRNAs, however, an mRNA of about 1 kilobase accumulates after induction of these cells with phorbol myristate acetate (PMA). The accumulation of this transcript is strongly inhibited by the immunosuppressive agent cyclosporin A. Its pattern of induction by PMA and suppression by cyclosporin A is thus the same as seen for several lymphokine mRNAs in these cells, including interleukin-2 and granulocyte-macrophage colony-stimulating factor. The short MMTV transcript is the most abundant PMA-induced transcript in EL4.E1 cells, but was not found in a series of other leukocyte tumor cell lines. It is initiated from a novel promoter within the env gene, and a segment of 1,161 nucleotides is then spliced out. The major part of the transcript is a copy of the long terminal repeat (LTR) of MMTV. The MMTV proviral genomes in these cells, and the short transcript, contain a 491-nucleotide deletion in the LTR compared with the normal MMTV provirus. The resulting open reading frame could encode a protein of molecular weight 22,800, which is a likely candidate for an LTR-related protein with a similar molecular weight recently described in this system (J. Racevskis, J. Virol. 58:441-449, 1986).

Animals

Cloning of cDNA for the bovine IL-2 receptor (bovine Tac antigen).

We have cloned the Tac analog of the bovine IL-2 receptor (IL-2R) cDNA. Using mouse and human cDNA probes, we isolated five bovine IL-2R clones from a lambda gt11 bovine long-term lymphocyte cDNA library. Three of the clones had inserts of 2600 base pairs (bp), the same size as the bovine IL-2R mRNA visualized on Northern blots. The full-length cDNA contain a 190-bp 5' untranslated region, followed by a 825-bp coding region, and a 3' untranslated region that contain 1600 bp. Comparison of the bovine and human IL-2R-coding sequences revealed 71% homology at the nucleotide level. The 3' and 5' non-coding regions were not as homologous, apart from a specific site in the 5'-untranslated region that contained a 5'-upstream start codon. In this region, 24 of 26 nucleotides were identical for the human and bovine cDNAs. Further analysis of the bovine IL-2R sequence also revealed the following: (i) the hydrophobic domains of the IL-2R protein were more conserved between species than the hydrophilic domains, (ii) the predominant site of intracellular IL-2R phosphorylation in mouse and human was a conserved Ser which was not conserved in the bovine sequence, and (iii) there exists a statistically significant amino acid homology with the AIDS gag protein.

Amino Acid Sequence

A serine protease (CCP1) is sequestered in the cytoplasmic granules of cytotoxic T lymphocytes.

Based upon the use of a new predictive algorithm, three peptides were synthesized that correspond to likely antigenic sites of the cytotoxic T cell-specific protease cytotoxic cell protein 1 (CCP1). Antibodies raised against these peptides, under reducing conditions, bound to a single protein of m.w. 29,000 found in two actively cytotoxic T cells. This protein was absent from a "cytotoxic" T cell line that had lost its cytolytic properties. By using immunocytologic techniques, the protein was localized within cytoplasmic granules. In addition, granules purified from the cytoplasm of cytotoxic T cells were shown, by Western blot analysis, to contain the protein. The molecule detected by the antibodies behaves, upon reduction, similarly to a diisopropylfluorophosphate-binding protein. Thus, here we provide evidence that CCP1, a protein whose expression correlates with cytotoxicity, is contained within organelles which have been implicated in killing. These findings strongly suggest that CCP1 plays a key role in T cell-mediated target cell lysis.

Cell Line

The immunostimulatory effect of T cells and T cell lymphokines on murine fetally derived placental cells.

Evidence for maternal immune recognition of the fetus can be found during pregnancy, yet the conceptus remains unharmed. Indeed, in some cases immunizing the mother with cells sharing histocompatibility antigens with the fetus is beneficial to fetal survival. This could be due to the effect of maternally derived lymphokines on placental growth and function, according to the immunostimulation hypothesis. We demonstrate here that placental cells in culture proliferate upon the addition of T cell-derived lymphokines. The lymphokine activity has been separated from IL 2 and B cell growth factor, and copurified with IL 3 and granulocyte-macrophage colony-stimulating factor (CSF-GM). Recombinant CSF-GM and recombinant IL 3 showed a similar effect. The placental cells that proliferate in culture are of fetal origin and are characterized by strong adherence, phagocytosis, nonspecific esterase staining, and response to the macrophage-specific colony-stimulating factor CSF-1. In addition, treatment of pregnant females with anti-thymocyte serum as well as anti-Ly-2.1 monoclonal antibody, at gestational times before Ly-2 antigen appearance in the fetus, leads to a reduction of the proliferative and phagocytic capacity of day 12 placentae. These results clearly demonstrate that maternal T cells act upon fetally derived placental cells to improve their proliferative and phagocytic potential, and thus provide evidence for the immunostimulatory role of these cells during pregnancy.

Animals

Induction, suppression and superinduction of lymphokine mRNA in T lymphocytes.

The expression of several lymphokine gene is characterized by a common pattern of induction, suppression and superinduction. This pattern was studied at the level of cellular mRNA in the mouse T-lymphoma cell line EL4, the human T-leukemia line Jurkat and in normal human peripheral blood lymphocytes. Lymphokine mRNA was induced by stimulating the cells with the phorbol diester PMA (TPA), with or without T-lymphocyte mitogens. The induction of Interleukin-2, Interferon gamma and the Colony Stimulating Factor for granulocytes and macrophages was suppressed by Cyclosporin A at moderate concns. Furthermore, these mRNAs accumulated to extraordinarily high levels (superinduction) if the protein synthesis inhibitor cycloheximide was added during transcription. Superinduction was not due to an increased rate of transcription. CsA interrupted ongoing transcription of IL2 by a mechanism not dependent on the induction of a new protein. The co-ordinate regulation of these genes strongly suggests that common intracellular signals mediate their expression.

Animals