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Interleukin (IL)-6, but not IL-1, induction in the brain downstream of cyclooxygenase-2 is essential for the induction of febrile response against peripheral IL-1alpha.

IL-1 is an endogenous pyrogen produced upon inflammation or infection. Previously, we showed that, upon injection with turpentine, IL-1 is induced in the brain in association with the development of fever. The role of endogenous IL-1 in the brain and the signaling cascade to activate thermosensitive neurons, however, remain to be elucidated. In this report, febrile response was analyzed after peripheral injection of IL-1alpha. We found that a normal febrile response was induced even in IL-1alpha/beta-deficient mice, indicating that production of IL-1 in the brain is not necessarily required for the response. In contrast, IL-6-deficient mice did not exhibit a febrile response. Cyclooxygenase (Cox)-2 expression in the brain was strongly induced 1.5 h after injection of IL-1alpha, whereas IL-6 expression was observed 3 h after the injection. Cox-2 expression in the brain was not influenced by IL-6 deficiency, whereas indomethacin, an inhibitor of cyclooxygenases, completely inhibited induction of IL-6. These observations suggest a mechanism of IL-1-induced febrile response in which IL-1 in the blood activates Cox-2, with the resulting prostaglandin E(2) inducing IL-6 in the brain, leading to the development of fever.

Animals↗

Induction of genomic instability in TK6 human lymphoblasts exposed to 137Cs gamma radiation: comparison to the induction by exposure to accelerated 56Fe particles.

The induction of genomic instability in TK6 human lymphoblasts by exposure to (137)Cs gamma radiation was investigated by measuring the frequency and characteristics of unstable clones isolated approximately 36 generations after exposure. Clones surviving irradiation and control clones were analyzed for 17 characteristics including chromosomal aberrations, growth defects, alterations in response to a second irradiation, and mutant frequencies at the thymidine kinase and Na(+)/K(+) ATPase loci. Putative unstable clones were defined as those that exhibited a significant alteration in one or more characteristics compared to the controls. The frequency and characteristics of the unstable clones were compared in clones exposed to (137)Cs gamma rays or (56)Fe particles. The majority of the unstable clones isolated after exposure to either gamma rays or (56)Fe particles exhibited chromosomal instability. Alterations in growth characteristics, radiation response and mutant frequencies occurred much less often than cytogenetic alterations in these unstable clones. The frequency and complexity of the unstable clones were greater after exposure to (56)Fe particles than to gamma rays. Unstable clones that survived 36 generations after exposure to gamma rays exhibited increases in the incidence of dicentric chromosomes but not of chromatid breaks, whereas unstable clones that survived 36 generations after exposure to (56)Fe particles exhibited increases in both chromatid and chromosome aberrations.

Cells, Cultured↗

Immunologic studies on the induction of diabetes in experimental animals. Cellular basis for the induction of diabetes by streptozotocin.

Repeated low doses of streptozotocin (STZ, 40 mg/kg body wt) gradually induce hyperglycemia in mice after a latent period of 5-7 days. The ability of STZ to induce hyperglycemia varies in different mouse strains. Repeated low doses of STZ fail to induce diabetes in T-cell-deficient mice, suggesting a crucial role of T-cells in the induction of diabetes by this procedure. Transfer of spleen cells from mice rendered diabetic by repeated low doses of STZ failed to induce hyperglycemia in the recipients. However, pretreating the recipients with a single low dose of STZ permitted efficient transfer of the diabetic state, suggesting that the immunologic reaction resulting in diabetes was actually specific for an STZ-modified beta cell.

Animals↗

Host H-2 haplotype modulates the induction of host-versus-graft disease after the induction of neonatal tolerance to H-2 alloantigens.

Mice injected at birth with semiallogeneic spleen cells develop a host-versus-graft disease (HVGD) characterized by the polyclonal activation of donor B cells by alloreactive host CD4+ T cells, the production of autoantibodies (autoAb) and the development of an inmmunocomplex-mediated glomerulonephritis. It has been demonstrated that the recognition of MHC class II, but not class I or non MHC, alloantigens triggers the development of the autoimmune syndrome (AIS). The finding of different expression patterns of Ia molecules in different mouse strains, and a closed restriction of some immune responses to particular H-2 haplotypes, prompted us to analyze whether variations in the expressed MHC class II molecules modify the HVGD. First, newborn BALB/c mice received spleen cells from F1 hybrid mice obtained by mating BALB/c mice with several mouse strains differing in the H-2 haplotype. Second, spleen cells from different F1 mice were neonatally injected in mice of both parental strains. All groups of BALB/c mice injected with different combinations of F1 mice showed an HVGD with a very similar serological course. However, in some instances, duration was different when comparing both parental strains injected with spleen cells from the mutual F1 hybrids. These results suggest that host MHC, but not donor MHC haplotype may modulate the AIS associated with the induction of neonatal tolerance.

Animals↗

HLA class I-mediated induction of cell proliferation involves cyclin E-mediated inactivation of Rb function and induction of E2F activity.

Chronic rejection of transplanted organs is manifested as atherosclerosis of the blood vessels of the allograft. HLA class I Ags have been implicated to play a major role in this process, since signaling via HLA class I molecules can induce the proliferation of aortic endothelial as well as smooth muscle cells. In this study, we show that HLA class I-mediated induction of cell proliferation correlates with inactivation of the Rb protein in the T cell line Jurkat as well as human aortic endothelial cells. HLA class I-mediated inactivation of Rb can be inhibited specifically by neutralizing Abs to basic fibroblast growth factor (bFGF), suggesting a role for FGF receptors in the signaling process. Signaling through HLA class I molecules induced cyclin E-associated kinase activity within 4 h in quiescent endothelial cells, and appeared to mediate the inactivation of Rb. A cdk2 inhibitor, Olomoucine, as well as a dominant-negative cdk2 construct prevented HLA class I-mediated inactivation of Rb; in contrast, dominant-negative cdk4 and cdk6 constructs had no effect. Furthermore, there was no increase in cyclin D-associated kinase activity upon HLA class I ligation, suggesting that cyclin E-dependent kinase activity mediates Rb inactivation, leading to E2F activation and cell proliferation.

Carrier Proteins↗

The induction of hapten-specific T cell tolerance by using hapten-modified lymphoid cells. I. Characteristics of tolerance induction.

BALB/c mice were made tolerant to the T cell-dependent phenomenon of contact sensitivity to DNFB by i.v. injection of syngeneic lymphoid cells which had been previously modified with DNFB in vitro. The highly efficient unresponsiveness, as measured by ear challenge and in vitro antigen-induced cell proliferation, was shown to follow dose-response kinetics both in vivo and in vitro and to be exquisitely specific for the DNP moiety. The kinetics of tolerance induction were shown to be very rapid and had been previously shown to be long lasting. Unresponsiveness was more efficient when the hapten-modified cells were introduced by the i.v. route and tolerance could be increased by repeated injection of tolerogen. The tolerance could be transferred to normal syngeneic recipients by spleen and/or lymph node cells from tolerant donors. A wide variety of hapten-modified lymphoid cells, including mixed cell populations and enriched populations of T cells, B cells, and macrophages, were capable of inducing tolerance. The unresponsiveness was dependent merely on the association of DNP to the lymphoid membrane proteins and not upon the viability of the hapten-modified cells. These experiments support the hypothesis that in hapten-specific T cell sensitivity, as exemplified by contact sensitivity to DNFB, specific T cell tolerance in actively induced by hapten on self-membrane. In other hapten-specific antibody-forming systems, tolerance appears to be most readily induced by hapten on soluble self protein or on a nonimmunogeneic carrier.

Animals↗

Regulation of lymphokine-activated killer cell induction by human recombinant IL-1 receptor antagonist. Obligate paracrine pathway of IL-1 during lymphokine-activated killer cell induction.

IL-2-stimulated human lymphocytes, referred to as lymphokine-activated killer (LAK) cells, can develop a broad range of lytic activity against fresh tumor cells and cultured tumor cell lines. IL-1, a pleiotropic cytokine shown to synergize with IL-2 on LAK induction, is endogenously synthesized and secreted by LAK cells. Immunoblot analysis demonstrated that IL-2-stimulated PBL produced the 31- to 34-kDa pro-molecules of IL-1 within 24 h and maintained their expression for at least 96 h. The role of secreted IL-1 has been examined using rIL-1R antagonist (IL-1ra). The addition of IL-1ra to LAK activation culture resulted in dose-dependent inhibited lytic activity, which was more apparent in LAK cells cultured with higher doses of IL-2. However, IL-1ra had no effect on proliferative responses elicited in LAK cells by IL-2. Moreover, when IL-1 binding was blocked by IL-1ra, the expression of the IL-2R p55 subunit was reduced compared with control LAK cells. The effect of IL-1 binding blockade on expression of other cytokine mRNA was further examined by polymerase chain reaction analysis, and, specifically, inhibition of both TNF-alpha and TNF-beta mRNA expression by IL-1ra was observed in PBL stimulated with IL-2. The reduced biologic activity of TNF in culture supernatants correlated well with the inhibition of mRNA expression. These findings suggest that autocrine/paracrine IL-1 is involved in the initial generation of LAK activity and, in particular, that TNF expression could be induced via an IL-1 autocrine pathway.

Base Sequence↗

[Induction of endogenous C-type virus by 5-iododeoxyuridine and augmentation of this induction by polycyclic hydrocarbons].

When the MLg Mouse cells were treated with the chemical carcinogens, in the presence of microsomal enzymes and NADPH2 after 5-iododeoxyuridine (IUdR) treatment, the induction frequency of the endogenous C-type virus was increased by nearly 10-fold in comparison with the cultures treated with IUdR only. In the preliminary screening of several polycyclic hydrocarbons including carcinogenic and non-carcinogenic products, apparently there was no correlation between the carcinogenecity in vivo and the stimulation capacity of IUdR induced C-type virus activation in our test conditions.

Cells, Cultured↗

Mechanism for induction of anti-DNA antibodies by bacterial lipopolysaccharides in mice; II. Correlation between anti-DNA induction and polyclonal antibody formation by various polyclonal B lymphocyte activators.

The capacity of various polyclonal B lymphocyte activators (PBA) to induce, in mice, the formation of anti-DNA antibodies was compared with their ability to mediate the release of DNA in circulating blood and to stimulate polyclonal antibody synthesis in vivo. Anti-DNA antibodies or polyclonal antibody synthesis were induced in mice after the injection of at least 10 microgram lipopolysaccaride (LPS) from Salmonella typhimurium, 1 mg dextran sulfate (DS), or 2 mg purified protein derivative of tubercle bacteria RT32 (PPD). Smaller quantities of LPS (0.1 microgram) or DS (500 microgram) were sufficient to cause the release of DNA in circulating blood, whereas PPD was not able to provoke such a release at any concentration used. The association of anti-DNA antibodies with polyclonal antibody synthesis in mice injected with various PBA contrasts with the lack of correlation between the formation of anti-DNA antibodies and the release of measurable amounts of DNA in circulating blood. These results strongly suggest that the induction of anti-DNA antibodies by PBA is a consequence of the polyclonal B lymphocyte activation.

Animals↗

Induction of protective immunity against Schistosoma mansoni by a nonliving vaccine. III. Correlation of resistance with induction of activated larvacidal macrophages.

Mice protected against Schistosoma mansoni infection by intradermal (i.d.) immunization with nonliving larval or adult worm antigens plus bacterial adjuvant developed 24-hr skin test responsiveness to schistosome antigens with the histologic features of delayed hypersensitivity. Intraperitoneal antigen injection elicited a mononuclear cell-enriched exudative population containing macrophages activated for direct cytotoxicity against schistosomula and tumor cell targets. This was likely to be due to in vivo exposure to macrophage-activating lymphokines, since these cells were unresponsive to further lymphokine stimulation in vitro and splenocytes from immunized mice reacted to specific in vitro antigen challenge by production of lymphokines capable of conferring larvacidal activity upon control macrophages. In contrast, mice treated with schistosome antigens by i.v. injection, which were not protected against challenge infection, failed to develop delayed hypersensitivity or activated macrophages in response to specific antigen challenge in vivo, and the titers of macrophage-activating lymphokine produced by in vitro antigen-stimulated splenocytes from these mice were threefold to fourfold lower than those produced by cells from animals immunized by the i.d. route. Thus, sensitization for cell-mediated immune responses including lymphokine production and macrophage activation correlated with induction of resistance to S. mansoni in this model of vaccination.

Animals↗

T-T cell interaction in the induction of delayed-type hypersensitivity (DTH) responses: vaccinia virus-reactive helper T cell activity involved in enhanced in vivo induction of DTH responses and its application to augmentation of tumor-specific DTH responses.

The role of antigen-specific helper T cells in augmenting the in vivo development of delayed-type hypersensitivity (DTH) responses was investigated. C3H/HeN mice were inoculated i.p. with vaccinia virus to generate virus-reactive helper T cell activity. These vaccinia virus-primed or unprimed mice were subsequently immunized subcutaneously (s.c.) with either trinitrophenyl (TNP)-modified syngeneic spleen cells (TNP-self), vaccinia virus-infected spleen cells (virus-self), or cells modified with TNP subsequent to virus infection (virus-self-TNP). Seven days later, these mice were tested for anti-TNP DTH responses either by challenging them directly with TNP-self into footpads or by utilizing a local adoptive transfer system. The results demonstrated that vaccinia virus-primed mice failed to generate significant anti-TNP DTH responses when s.c. immunization was provided by either virus-self or TNP-self alone. In contrast, vaccinia virus-primed mice, but not unprimed mice, could generate augmented anti-TNP DTH responses when immunized with virus-self-TNP. Anti-vaccinia virus-reactive helper activity was successfully transferred into 600 R x-irradiated unprimed syngeneic mice by injecting i.v. spleen cells from virus-primed mice. These helper T cells were found to be antigen specific and were mediated by Thy-1+, Lyt-1+2- cells. DTH effector cells enhanced by helper T cells were also antigen specific and were of the Thy-1+, Lyt-1+2- phenotype. Furthermore, vaccinia virus-reactive helper T cell activity could be applied to augment the induction of tumor-specific DTH responses by immunization with vaccinia virus-infected syngeneic X5563 tumor cells. T-T cell interaction between Lyt-1+ helper T cells and Lyt-1+ DTH effector T cells is discussed in the light of the augmenting mechanism of in vivo anti-tumor-specific immune responses.

Animals↗

[Changes in the induction and repair of double-stranded DNA breaks in pro- and eukaryote cells. I. Use of a Zimm elastoviscosimeter to study induction of double-stranded DNA breaks in gamma-irradiated Escherichia coli cells].

The technique of elastoviscosimetry allows to study the induction of double-strand breaks in DNA of E. coli at low doses (on the order of D37). The dose dependence of retardation time to shows a characteristic maximum. It is shown that the ascending part of the curve is due to the phenomenon of relaxation of supercoiled DNA in the bacterial nucleoid. Relaxation is effected by different gamma-induced damages in DNA which are not double-strand breaks. The position of the maximum yields the average dose for the formation of the first double-strand break, which transforms the circular DNA into a linear chain. The descending part of the dose curve is explained by accumulation of additional double-strand breaks. The gamma-irradiation and lysis of cells was performed in different media. It was found that only in the case when the action of nucleases was substantially (but not completely) inhibited, the position of the maximum of the dose dependent of retardation time coincides satisfactorily with the value of D37 (14.5 +/- 2.3 and 12.5 +/- 3 krad correspondingly). If the medium does not contain inhibitors of nucleases then the position of the maximum corresponds to a 4.2 times lower dose of gamma-rays. This shows that double-strand breaks in gamma-irradiated DNA are generated mainly by enzymes participating in repair processes and that the first double-strand breaks seems to be the true reason of lethality because of inability to be repaired.

DNA Repair↗

Induction of complement receptor expression in cell lines derived from human undifferentiated lymphomas. II. Characterization of the induced complement receptors and demonstration of the simultaneous induction of EBV receptor.

We have studied the specificity of complement receptors induced by theophylline in 2 cell lines derived from undifferentiated lymphomas, one of Burkitt's type, and compared it to that of complement receptors in other cell types. Both C3b and C3d receptors were induced. The induced C3b receptor differed from the C3b receptor of mature normal lymphocytes, polymorphonuclear leukocytes and the cells of a nodular lymphoma in 2 respects. Firstly, it bound C3b much less avidly (by a factor of several hundred-fold) and secondly, we were unable to demonstrate C4b binding. EBV receptors were induced at the same time as complement receptors, and permitted the conversion of a greater fraction of cells to EBNA positivity after experimental infection with EBV. The induction of receptors was not associated with a change in the fluidity of the plasma membranes and our data do not favor a different orientation of induced receptors within the membrane as compared to receptors of other cell types--a potential explanation for the different specificities. Our findings are consistent with the possibility that the complement receptors of lymphocyte precursors differ from these of mature lymphocytes.

Binding, Competitive↗

Induction and regulation of immunoglobulin expression in a murine pre-B cell line, 70Z/3. I. Cell cycle-associated induction of sIgM expression and kappa-chain synthesis in 70Z/3 cells by LPS stimulation.

Stimulation of a murine pre-B cell line, 70Z/3, with LPS induced sIgM expression and an increase of L kappa-chain mRNA within 12 hr. In synchronized 70Z/3 cells, the cell division cycle was 10 to 11 hr and LSP-stimulation did not affect the cell division cycle. LPS-signals given at G1/S boundary induced sIgM expression in the G2 to M-phase. On the other hand, LPS-signals given after M-phase did not induce sIgM expression. Inhibition of cell division with demecorcin did not affect sIgM expression in the M-phase. Induction of intracellular kappa-chain synthesis was also observed in the G2 to M-phase when the LPS-stimulation was provided at G1/S boundary, but LPS-signals given after the M-phase did not induce de novo synthesis of kappa-chain. These results showed that LPS-induced sIgM expression and synthesis of kappa-chain were cell cycle-related events and sIgM expression was associated wih de novo synthesis of kappa-chain.

Animals↗

Regulation of human IgG subclass production by cytokines. IFN-gamma and IL-6 act antagonistically in the induction of human IgG1 but additively in the induction of IgG2.

In this study, we investigated the roles of IFN-gamma and IL-6 in the induction of IgG subclasses from PBMC stimulated with PWM. The presence of IFN-gamma in the first half of the culture period dramatically suppressed the production of IgG1, whereas spontaneous IgG2 secretion was sharply enhanced by IFN-gamma when the latter was present throughout the culture period. Endogenous IFN-gamma was shown to be effective in IgG1 and IgG2 production because IgG1 production was enhanced and IgG2 production was inhibited by the addition of anti-IFN-gamma Ab. Because IFN-gamma did not act on the PBMC depleted of surface IgG2-bearing cells to enhance IgG2, IFN-gamma is unlikely to act as a switching factor. Differing from IFN-gamma, IL-6 enhanced every IgG subclass production as a nonswitching factor, although each of IgG subclasses required IL-6 differentially; maximal IgG1 responses and IgG4 responses occurred when IL-6 was present for the entire culture period or the last half of the culture period, whereas maximal IgG3 responses required the presence of IL-6 for the entire culture period and maximal IgG2 responses were seen when IL-6 was present solely during the last half of the culture period. IFN-gamma antagonized the synthesis of IgG1 by IL-6 and cooperated with IL-6 to produce IgG2. This observation was further supported by the fact that the IL-6-induced IgG1 and IgG2 enhancement were respectively up-regulated and down-regulated by anti-IFN-gamma. Altogether, the critical roles of IFN-gamma and IL-6 were implicated.

Humans↗

Induction of the c-ski proto-oncogene by phorbol ester correlates with induction of megakaryocyte differentiation.

Overexpression of v-ski blocks the terminal differentiation of chicken erythroblasts, and in cooperation with v-sea causes transformation of these cells, indicating that c-ski may play a role in regulating either proliferation or differentiation in hematopoietic cells. We examined c-ski expression in four different myeloid cell lines which can be induced to differentiate by exposure to phorbol 12-myristate 13-acetate (PMA). Two of the cell lines are multipotent and have the ability to differentiate into either erythrocytes or megakaryocytes (K562 and HEL cells), one cell line differentiates exclusively into megakaryocytes (CHRF-288-11), and the fourth cell line differentiates into either monocytes or granulocytes (HL-60). Our findings indicate that c-ski mRNA is up regulated by PMA only in those cell lines which respond by differentiating along the megakaryocyte lineage. The extent of differentiation and the observed increase in c-ski mRNA levels are positively correlated with the PMA concentration used to induce differentiation. Experiments in which CHRF-288-11 cells were treated with the protein kinase C (PKC) activator bryostatin 1 indicate that c-ski mRNA induction is not a general effect of PKC activation. The results strongly suggest that c-ski expression is correlated with megakaryocyte maturation.

Bryostatins↗

Kinetically coordinated induction of TAP1 and HLA class I by IFN-gamma: the rapid induction of TAP1 by IFN-gamma is mediated by Stat1 alpha.

Transporter associated with Ag processing-1 (TAP1) is induced by IFN-gamma more rapidly than is HLA class I. Kinetic analysis of transfectants reveals that IFN-gamma activates the TAP1 promoter more rapidly than the HLA-B7 class I promoter. A gamma-activating sequence (GAS) in the TAP1 promoter is necessary for the rapid induction by IFN-gamma. Two overlapping IFN consensus sequences contribute to the constitutive and TNF-induced expression of TAP1 but are not necessary for the IFN-gamma response. Moreover, IFN-gamma activates the GAS-binding protein Stat1 alpha much more rapidly than it induces the IFN consensus sequence-binding protein IRF-1, which mediates the response of the HLA-B7 class I promoter. We conclude that IFN-gamma uses different transcription factors to regulate the sequence of appearance of these interacting gene products.

ATP Binding Cassette Transporter, Subfamily B, Mem↗