PubMed HealthSearch

Biomedical subjects

R Lahesmaa

Publications and source records attributed to R Lahesmaa.

At least 19 recordsLinked to original sources

Identification of a Stat-6-responsive element in the promoter of the human interleukin-4 gene.

Interleukin (IL)-4 is an immunomodulatory cytokine produced by a number of cell types including T cells, basophils, and mast cells. This pleiotropic cytokine has a number of immunoregulatory functions; however, the molecular mechanisms controlling the transcription of this gene are not yet completely understood. Several studies have implicated a possible autoregulatory mechanism for its own expression. Here, we have identified a Stat-6-responsive element (Stat-6RE) in the promoter of the human IL-4 gene. Utilizing electrophoretic mobility shift analysis, we have demonstrated the presence of two specific IL-4-responsive DNA-protein complexes in nuclear extracts of both human Th1 and Th2 clones. Phytohemagglutinin-blasted peripheral blood T cells also generated an inducible complex in response to stimulation with IL-4 and the IL-4-like cytokine IL-13. Transient transfection of the murine pre-B cell line BA/F3 stably transfected with the full-length human IL-4 receptor alpha chain demonstrated the ability of multicopy Stat-6RE to initiate transcription from a heterologous promoter upon IL-4 or IL-13 stimulation. These results indicate a possible autocrine mechanism for the regulation of IL-4 gene transcription through the Stat-6RE as well as a possible mechanism for IL-13 regulation of the human IL-4 promoter.

Animals

Activation of nuclear factor of activated T cells in a cyclosporin A-resistant pathway.

The mechanism of action of the immunosuppressive drug cyclosporin A (CsA) is the inactivation of the Ca2+/calmodulin-dependent serine-threonine phosphatase calcineurin by the drug-immunophilin complex. Inactive calcineurin is unable to activate the nuclear factor of activated T cells (NFAT), a transcription factor required for expression of the interleukin 2 (IL-2) gene. IL-2 production by CsA-treated cells is therefore dramatically reduced. We demonstrate here, however, that NFAT can be activated, and significant levels of IL-2 can be produced by the CsA-resistant CD28-signaling pathway. In transient transfection assays, both multicopy NFAT- and IL-2 promoter-beta-galactosidase reporter gene constructs could be activated by phorbol 12-myristate 13-acetate (PMA)/alpha-CD28 stimulation, and this activation was resistant to CsA. Electrophoretic mobility shift assay showed the induction of a CsA-resistant NFAT complex in the nuclear extracts of peripheral blood T cells stimulated with PMA plus alphaCD28. Peripheral blood T cells stimulated with PMA/alphaCD28 produced IL-2 in the presence of CsA. Collectively, these data suggest that NFAT can be activated and IL-2 can be produced in a calcineurin independent manner.

Base Sequence

CD45 isoforms on human CD4+ T-cell subsets.

We have examined the level of surface expression and functional properties of leukocyte function associated antigen-1, very late antigen-4, and CD45 isoforms on a panel of human CD4+ T-cell clones representative of TH0, TH1, and TH2 cells. There were no qualitative differences in the expression of these antigens among the three types of CD4+ T-cell clones. However, CD45RB was the only CD45 isoform that provided a costimulatory signal in a solid-phase antibody-induced cellular proliferation assay. Additionally, the antigen-induced proliferative response of T-cell clones was inhibited by soluble anti-CD45RO and anti-CD45RB antibodies. Our results suggest that CD45 isoforms differentially provide costimulatory signals to T cells. However, the ability of each CD45 isoform to provide a costimulatory signal does not differ among the TH0, TH1, or TH2 T-cell populations.

CD4-Positive T-Lymphocytes

Modulation of the Grb2-associated protein complex in human CD4+ T cells by receptor activation.

A panel of human CD4+ T cell clones was utilized to dissect and analyze the biochemical consequences of activation of CD3 or CD28. To molecularly characterize receptor-activated proximal signaling events, tyrosine-phosphorylated proteins co-precipitating with a Grb2 fusion protein after receptor activation were analyzed. Ligation of CD28, but not other costimulatory molecules, induced the tyrosine phosphorylation of two previously identified Grb2 binding proteins (pp76 and pp116). A third Grb2 binding protein (pp36) was extensively tyrosine phosphophorylated in response to combined CD3 and CD28 activation, but not in response to ligation of either receptor alone. cAMP and co-ligation of CD45 affected the receptor-activated tyrosine phosphorylation of Grb2-associated proteins. Furthermore, we demonstrated that two signaling molecules, Vav and phosphatidylinositol 3'-kinase (PI(3)K), also interacted with the Grb2 protein complex. The activity of PI(3)K was required for T cell activation, because wortmannin, a PI(3)K inhibitor, blocked T cell proliferation and cytokine production induced by ligation of CD3 and CD28. In conclusion, we demonstrate that in activated human T cell clones, the composition of Grb2 protein complex is modulated by costimulatory signals and cAMP, which may be important for the regulation of intracellular signal transduction.

Adaptor Proteins, Signal Transducing

Costimulatory signals can selectively modulate cytokine production by subsets of CD4+ T cells.

Analysis of experimental animal models and human clinical samples has indicated that the selective activation of CD4+ T cell subsets with distinct profiles of cytokine production plays an important role in the pathogenesis of human inflammatory and allergic diseases. The possibility that differential activation of costimulatory pathways is a mechanism for selectively modulating cytokine production by CD4+ T cells was tested. The proliferative response and cytokines secreted by a panel of human CD4+ T cell clones, representative of Th1 or Th2/0 cells, in response to activation of different costimulatory pathways was measured. CD28-mediated costimulatory signals induced proliferation and IFN-gamma secretion by Th1 cells. Although CD28-ligation induced Th2/0 cells to proliferate, it did not trigger IL-4 production. Ligation of LFA-1 and CD45 isoforms also generated costimulatory signals activating cytokine secretion by the different types of T cell clones. Th1 cells secreted the same profile of cytokines, irrespective of which costimulatory pathway was engaged. However, the cytokine secreted by a subset of Th2/0 cells varied, depending upon which costimulatory pathways were activated. These results suggest that the costimulatory pathways activated by APCs can selectively influence cytokine production by CD4+ T cell subsets.

Animals

Pathogen antigen- and superantigen-reactive synovial fluid T cells in reactive arthritis.

Analysis of pathogen-reactive T cell clones (CD3+4+8-TCR alpha beta +), isolated from the synovial fluid of 2 HLA-B27-positive patients with Yersinia enterocolitica-triggered reactive arthritis, has provided important information about the cellular immune response to this disease-inciting pathogen. This study demonstrates that the proteins secreted by Y. enterocolitica, including a protein with tyrosine phosphatase activity (YopH), are potent immunogens stimulating CD4+ cells within the inflamed joint. The pathogen-reactive T cell clones preferentially utilized a limited set of T cell receptor variable region gene segments. A purified Yersinia superantigen triggered a proliferative response in most of the antigen-reactive T cell clones tested. These results suggest that the activity of this pathogen's superantigen influences the cellular immune response to its antigens.

Adult

Yersinia-specific antibodies in serum and synovial fluid in patients with Yersinia triggered reactive arthritis.

OBJECTIVES: To further evaluate the role of bacterial antigens in triggering inflammation in the joint in patients with reactive arthritis by studying local antibody synthesis in the joint. METHODS: Yersinia-specific antibodies in paired serum and synovial fluid samples from 29 patients with yersinia triggered reactive arthritis were studied using an enzyme linked immunosorbent assay (ELISA), an inhibition ELISA with six monoclonal antibodies against lipopolysaccharide or released proteins of yersinia and immunoblotting. Antibodies of IgM, IgG and IgA classes, as well as antibodies of IgA subclasses and those containing secretory component were measured against the lipopolysaccharide and the sodium dodecyl sulphate extract of whole Yersinia enterocolitica O:3 bacteria. RESULTS: It was shown that yersinia-specific antibodies, as well as antibodies against other microbial antigens (rubella, measles, Bordetella pertussis, tetanus toxoid and Candida albicans) in synovial fluid mirror those in serum by concentration, by specificity and by distribution in classes and subclasses. CONCLUSION: These results do not suggest any strong local antibody production, but indicate that the majority of yersinia antibodies in the synovial fluid are derived from the circulation.

Adolescent

Antibodies to Klebsiella pneumoniae, Escherichia coli, and Proteus mirabilis in ankylosing spondylitis: effect of sulfasalazine treatment.

OBJECTIVE: To make a longitudinal study of antibodies to Klebsiella pneumoniae in patients with ankylosing spondylitis (AS) and to assess treatment effects. As a comparison we measured antibodies of 2 other gut associated bacteria, Escherichia coli and Proteus mirabilis. METHODS: In a double blind study in 84 Finnish outpatients with AS before and after 26 weeks' treatment with sulfasalazine or placebo we measured serum antibodies to Klebsiella pneumoniae, E. coli and Proteus mirabilis with ELISA: Serum samples of 100 healthy blood donors served as controls. RESULTS: The levels of IgA class antibodies to all 3 bacteria were statistically significantly higher in the sera of the patients compared to the controls. During sulfasalazine treatment significant decreases were observed in concentrations of the IgA class antibodies to Klebsiella and E. coli whereas only a slight decrease was observed in the concentrations of IgA antibodies to Proteus mirabilis. There were no correlations between the clinical and laboratory results observed with sulfasalazine and decrease in concentrations of IgA class antibodies. CONCLUSION: Our results agree with the role of gut associated lymphoid tissue in the pathogenesis of AS, but do not totally exclude Klebsiella pneumoniae as a specific agent contributing to the development of AS.

Adult

Preferential usage of T cell antigen receptor V region gene segment V beta 5.1 by Borrelia burgdorferi antigen-reactive T cell clones isolated from a patient with Lyme disease.

Forty-three CD3+4+8- TCR alpha beta+ Borrelia burgdorferi-reactive T cell clones isolated from the peripheral blood of a single patient with clinically active chronic Lyme arthritis were characterized. The spirochetal Ag recognized by 16 of these T cell clones was determined by reactivity with a panel of recombinant spirochetal Ag, which included the OspA, OspB, flagellin, Hsp60 and Hsp70 proteins. All three T cell clones reactive with heat shock proteins recognized a non-cross-reactive epitope unique to the spirochetal Ag. Analysis of the TCR V regions revealed preferential usage of V beta 5.1; 5 of 15 T cell clones that recognized an unidentified spirochetal Ag utilized this V beta gene segment. Most of the T cell clones recognized a given spirochetal Ag exclusively within the context of one HLA class II allele. However, two T cell clones, which recognized an unidentified Ag in the spirochetal lysate within the context of different HLA class II alleles, were both TCR V beta 5.1+, although each displayed a distinct alpha-chain. Moreover, in vitro incubation of this patient's PBMC with B. burgdorferi Ag resulted in a specific increase in the percentage of T cells expressing TCR V beta 5.1. These results indicate that B. burgdorferi has a V beta-selective factor influencing the cellular immune response in a patient with clinically active Lyme disease.

Adolescent

Molecular mimicry: any role in the pathogenesis of spondyloarthropathies?

Ankylosing spondylitis and reactive arthritis are seronegative spondyloarthropathies, which are strongly associated with HLA-B27. Despite intensive investigation, the basis for this association is not clear. However, in recent years one favored hypothesis to explain this linkage has been that of molecular mimicry, i.e., sharing of linear or conformational epitopes common to microbial antigens and host structures. During the past few years several examples of molecular mimicry between HLA-B27 and microbial antigens have been described. Heat shock proteins, among others, have been considered as target candidates for autoimmune phenomena, because of the high degree of homology between bacterial and mammalian species. Reactive arthritis triggered by Yersinia or Salmonella provides a unique model for studying the pathogenetic mechanisms underlying human inflammatory joint diseases in general, because the arthritogenic microbes are known and well-characterized. We have described two bacterial proteins that share amino acid homology with HLA-B27, namely YadA (Yersinia adhesin) and OmpH, outer surface proteins of Yersinia and Salmonella, respectively. Notably, the area of identity of these amino acid sequences is located in the same place on the HLA-B27 molecule as a hexapeptide identical between Klebsiella nitrogenase and HLA-B27, and a pentapeptide shared by a Shigella flexneri protein and HLA-B27. We have investigated immune responses to a panel of synthetic peptides based on the HLA-B27-homologous portions of pathogen-specific antigens in patients with reactive arthritis and ankylosing spondylitis. One third of the patients have antibodies to the synthetic peptides. However, instead of recognizing the HLA-B27-homologous portion, the antibodies are directed against the flanking sequences of the synthetic peptides. The concept of the role of molecular mimicry between HLA-B27 and microbial antigens in the pathogenesis of spondyloarthropathies is discussed, with a conclusion that no convincing evidence for its significance exists at the present.

Adhesins, Bacterial

IL-10 is produced by subsets of human CD4+ T cell clones and peripheral blood T cells.

Murine IL-10 has been reported originally to be produced by the Th2 subset of CD4+ T cell clones. In this study, we demonstrate that human IL-10 is produced by Th0, Th1-, and Th2-like CD4+ T cell clones after both Ag-specific and polyclonal activation. In purified peripheral blood T cells, low, but significant, levels of IL-10 were found to be produced by the CD4+CD45RA+ population, whereas CD4+CD45RA- "memory" cells secreted 5- to 20-fold higher levels of IL-10. In addition, IL-10 was produced by activated CD8+ peripheral blood T cells. Optimal induction of IL-10 was observed after activation by specific Ag and by the combination of anti-CD3 mAb and the phorbol ester tetradecanoyl phorbol acetate, whereas the combination of calcium ionophore A23187 and 12-O-tetradecanoylphorbol-13-acetate acetate was a poor inducer of IL-10 production. Kinetic studies indicated that IL-10 was produced relatively late as compared with other cytokines. Maximal IL-10 mRNA expression in CD4+ T cell clones and purified peripheral blood T cells was obtained after 24 h, whereas maximal IL-10 protein synthesis occurred between 24 h and 48 h after activation. No differences were observed in the kinetics of IL-10 production among Th0, Th1-, and Th2-like subsets of CD4+ T cell clones. The results indicate a regulatory role for IL-10 in later phases of the immune response.

Antigens, CD

Yersinia enterocolitica activates a T helper type 1-like T cell subset in reactive arthritis.

The profile of lymphokines secreted by 14 T cell clones and 24 T cell lines reactive with Yersinia Ag isolated from the synovial fluid cells of two HLA-B27+ patients with Yersinia-triggered reactive arthritis was characterized. In response to Ag-specific or -nonspecific stimulation, all of the Yersinia-reactive T cell clones and lines had a pattern of lymphokine secretion resembling that of murine (Th1) cells. A total of 50% of T cell lines and clones randomly isolated from a reactive arthritis patient, without prior in vitro stimulation with Yersinia Ag, also exhibited a Th1-like profile of cytokine secretion upon nonspecific activation. This indicates that the selective expansion of this subset of T cells had already occurred in vivo. The possibility that the predominance of Th1-like T cells was an artefact generated by the T cell cloning procedure was excluded; 50% of the randomly isolated T cell clones and lines produced IL-4, IL-5, or both cytokines upon nonspecific activation. These results indicate that Yersinia Ag selectively activate a Th1-like subset of T cells in patients with Yersinia-triggered reactive arthritis. Accumulation of such cells in the synovial tissue of patients with reactive arthritis may play a key role in the pathogenesis of this disease.

Antigens, Bacterial

AB0 and Lewis blood groups in reactive arthritis.

In this study we evaluated secretor status in patients with reactive arthritis. Previous evidence indicates that non-secretion of AB0 and Lewis blood group antigens to saliva and other secretions is associated with susceptibility to certain bacterial infections and certain diseases with suspected autoimmune etiology. Secretor status can be determined based on the Lewis phenotype. We studied AB0, Lewis and Rhesus blood groups of 54 patients with previous reactive arthritis, 26 of whom had uroarthritis and 28 of whom had arthritis after enteric infection. Furthermore, 25 patients with uncomplicated yersiniosis and 57 healthy controls were studied. We did not find any correlation between secretor status and reactive arthritis or gastroenteritis due to Yersinia. AB0 blood group antigen B appeared to be protective against uroarthritis.

ABO Blood-Group System

Molecular mimicry in the pathogenesis of spondyloarthropathies. A critical appraisal of cross-reactivity between microbial antigens and HLA-B27.

We describe an amino acid homology between a virulence plasmid encoded outer membrane protein of Yersinia, YadA (previously called Yop1) and HLA-B27. This tetrapeptide is also included in the hexapeptide, earlier found to be identical between Klebsiella nitrogenase and HLA-B27. The synthetic peptide based on the HLA-B27 homologous portion of the YadA does not stimulate lymphocytes obtained from HLA-B27+ patients with Yersinia-triggered reactive arthritis or from controls. One-third of the yersiniosis patients have antibodies against the synthetic peptide. Instead of recognizing the HLA-B27 homologous portion, the antibodies are directed against the left flanking sequence of the synthetic peptide. Similar results were obtained regarding antibody response to Klebsiella nitrogenase derived synthetic peptide included in the panel of controls; the response was not restricted to patients with reactive arthritis nor was it specifically directed against the sequence shared by HLA-B27 and Klebsiella pneumoniae nitrogenase. The present results do not support the role of molecular mimicry or cross-reactive antibodies in the pathogenesis of spondyloarthropathies.

Adult

IgG and IgA antibody responses against porins in Yersinia-triggered reactive arthritis.

Using an enzyme immunoassay, the development and persistence of serum IgG and IgA class antibody responses against porins, a class of the major outer membrane proteins, were compared between patients who developed reactive arthritis and subjects who did not after Yersinia infection. A significant difference was seen between the two patient groups in the beginning of the disease: those with reactive arthritis had higher levels of IgG and IgA class antibodies against the porins. A similar difference in the IgA class antibodies was also seen at follow-up. This supports the hypothesis of persistence of the pathogen within the arthritic host.

Adolescent

Function of terminal ileum in patients with Yersinia-triggered reactive arthritis.

In order to study the function of the intestinal epithelium in the terminal ileum, the Schilling test was performed in 10 patients with Yersinia-triggered reactive arthritis, in 10 patients who had recovered from Yersinia enteritis without complications, and in five patients with rheumatoid arthritis treated with non-steroidal anti-inflammatory agents. The Schilling test indicates absorption of vitamin B12 in the terminal ileum, i.e. the area affected by Yersinia and inflamed in patients with reactive arthritis. The findings obtained demonstrate increased uptake through the epithelium in this area of the intestine in patients with Yersinia-triggered reactive arthritis. There are two possible explanations. First, Yersinia infection may have a long-term effect on the gut mucosa. Secondly, some individuals may, at the level of the terminal ileum, show enhanced absorption of vitamin B12 and/or other substances such as microbes or their components, resulting in increased susceptibility to certain infections.

Adult

Borrelia burgdorferi HSP70 homolog: characterization of an immunoreactive stress protein.

The gene encoding an immunoreactive Borrelia burgdorferi HSP70 homolog was isolated and characterized. The predicted amino acid sequence of this spirochetal protein confirms that this gene encodes a member of the HSP70 family of proteins. Although there appears to be a single copy of this gene on the spirochetal chromosome, two distinct transcripts hybridizing to the hsp70 probe are detected in RNA isolated from B. burgdorferi. The amount of spirochetal HSP70 RNA transcripts is shown to be thermally regulated. Antibodies in the serum of three Lyme arthritis patients and cloned T-cell lines isolated from one patient with Lyme arthritis recognize the expressed recombinant HSP70, indicating that it is an immunologically important spirochetal antigen. Antibodies in a rabbit antiserum, as well as antibodies in the serum of two of three Lyme arthritis patients examined, bound to expressed truncated recombinant HSP70s with 250 amino acids deleted from either the amino or carboxy terminus of the protein. However, antibodies in the serum of three Lyme arthritis patients, which were reactive with spirochetal HSP70, did not cross-react with human HSP70 proteins.

Adolescent