Most cases of early onset familial Alzheimer's disease (FAD) involve mutations in presenilins (PS1 and PS2) genes. The C-terminal portion of PS2 is a homologue with an apoptosis-linked gene (ALG-3). To characterise the role of PS1 in apoptosis, we overexpressed the corresponding C-terminal fragment of PS1 (PS1-f) under the control of the tetracycline-responsive transactivator in Jurkat cells. The tight regulation of the expression of the 11 kDa PS1-f peptide was verified. A 50% inhibition of anti-Fas induced apoptosis was observed upon PS1-f transient overexpression compared to the repressed state. Stable transfectants selectively overexpressing PS1-f revealed a transient protective effect of 30% after apoptosis induction.
The aim of this study was to compare two types of cyclosporin (Cs) particles, SDZ OXL 400 and SDZ IMM 125, the latter being more hydrophilic, to understand their uptake by airway macrophages. Alveolar macrophages (AM), harvested by bronchoalveolar lavage (BAL) of hamster lungs, were cultured with two different doses (0.1 mg and 0.5 mg) for 1 h, 6 h, and 24 h. Control incubations without Cs particles or with latex particles were carried out simultaneously. Cell viability, cell activation (i.e., respiratory burst, interleukin-6 (IL-6) synthesis) and mean volume of particles phagocytosed per macrophage were measured. Both types of Cs particles did not modify the AM viability, and failed to induce IL-6 synthesis during phagocytosis but slightly decreased the cell oxidative respiratory burst. The comparison between SDZ OXL 400 and SDZ IMM 125 showed that for the lower dose the mean volume of both Cs types phagocytosed was similar at 1 h and 6 h. At 24 h an increase of the mean volume phagocytosed was seen for SDZ IMM 125 but not for SDZ OXL 400. For the higher dose the mean volume of SDZ IMM 125 phagocytosed was higher than SDZ OXL 400 at 1 h and 6 h and comparable for both types at 24 h. SDZ IMM 125 particles were phagocytosed more rapidly than SDZ OXL 400. The mean volume of phagocytosed latex particles increased with time and dose and was higher than for both Cs particle types. In conclusion, AM were seen to phagocytose particles of different physical properties (i.e., form, size, and shape), chemical properties (i.e., inert or peptidic) and degrees of hydrophilicity in a different manner.
A transgenic mouse system has been established to follow the pattern of IL-2 expression at the level of single T cells. This was achieved by introducing a human IL-2 promoter-driven reporter gene (Escherichia coli lacZ) into the germline of mice and monitoring its product, beta-galactosidase (beta-gal), by FACS analysis. Ex vivo experiments confirmed that the regulated expression of the transgene is comparable with that of the endogenous IL-2 gene. Transgene expression is inducible by mitogens, restricted to T cells, and diminished by immunosuppressive agents, such as cyclosporin A, at concentrations known to suppress IL-2 transcription. Depending on the mitogens used, 30-50% of peripheral T cells produced IL-2 with an asynchronous induction pattern, as measured by transgenic beta-gal activity. Both helper (CD4+CD8-) and cytotoxic T cells (CD4-CD8+) respond with comparable heterogenous expression levels but they show different frequencies of beta-gal production. Transgenic beta-gal-producing T cells were detectable as early as 2 h after mitogen stimulation. These cells represent a transitional IL-2 secreting, IL-2 receptor alpha-chain negative T cell population, which occurs in the autocrine process of T cell activation. Administration of staphylococcal enterotoxin A (SEA), a bacterial superantigen, resulted in a T cell specific (Thy-1.2) increase (2.5-fold) of reporter gene expression in vivo. In summary, we could demonstrate that IL-2 promoter-driven reporter gene expression in transgenic mice is a sensitive tool to characterize IL-2 expressing cells phenotypically.(ABSTRACT TRUNCATED AT 250 WORDS)
Despite the successful clinical application of the immunosuppressive drug cyclosporin A (CsA, Sandimmun), its precise mechanism of action in the process of T cell activation remains elusive. CsA binds to the high-affinity cytosolic receptor cyclophilin whose peptidyl-prolyl cis-trans isomerase activity is inhibited upon binding. The linkage of this effect with the inhibition of the T cell receptor-mediated signal transduction pathway, which leads to a suppression of lymphokine gene transcription, is still unclear. We analyzed the relationship between cyclophilin-binding and immunosuppressive activity (e.g., effect on IL-2 transcription) of cyclosporin derivatives in vitro. The results show that binding to cyclophilin is required, but not sufficient for immunosuppression. Cyclosporin analogues which completely lack immunosuppressive activity but fully retained their cyclophilin-binding capacity antagonize the immunosuppressive activity of CsA. These derivatives inhibit the isomerase activity of cyclophilin, which clearly demonstrates that inhibition of the cyclophilin isomerase activity does not lead to immunosuppression. In analogy to the other immunosuppressants of microbial origin, FK-506 and rapamycin, a specific structure of the "effector" domain of CsA, which is unrelated to the cyclophilin-binding domain, determines the biological activity. In the nucleus, CsA interferes with the DNA-binding of inducible transcription factors to their respective DNA motifs within lymphokine promoters by affecting intracellular translocation of transcription factor subunits.
The immunosuppressive drug cyclosporin A (CsA, Sandimmun, SIM) is currently being evaluated in a variety of autoimmune disorders with some remarkable successes. Despite the wide empiric application of CsA, the precise mechanism of action of this drug remains elusive. To identify the molecular mode of action of CsA in the process of T cell activation, we have compared the biological profile of cyclophilin-binding cyclosporin analogues (CBCA), which lack immunosuppressive properties, with CsA. We have found that CsA binding to its intracellular receptor (cyclophilin) is required but not sufficient for immunosuppression. Moreover, inhibition of the peptidyl-prolyl cis-trans isomerase activity of cyclophilin does not seem to be relevant for the inhibitory effects of CsA. In analogy to the immunosuppressants FK506 and rapamycin, a specific structure at the 'effector' domain of the CsA molecule different from the immunophilin 'binding' domain determines the biological activity. Overall, a significant understanding of the structure-activity relationship of CsA has emerged. This will have a major impact on the identification of the precise mechanism of action of CsA and its side effects in the process of immunosuppression.
In order to study the structural and functional mimicry of an antigen by anti-idiotypic antibodies, we generated anti-idiotopic monoclonal antibodies (anti-Id mAbs) against a mAb (R45-45-11) with specificity for the immunosuppressive cyclic undecapeptide cyclosporine (Cs; Sandimmune). Three out of five anti-Id mAbs inhibited the binding of Cs to the anti-Cs mAb R45-45-11. All anti-Id mAbs cross-reacted only with one (anti-Cs mAb V45-271-10) out of 19 anti-Cs mAbs. The anti-Cs mAb V45-271-10 recognizes an epitope on the Cs molecule which is very similar to that recognized by R45-45-11. R45-45-11 and V45-271-10 differ only by one amino acid in the variable region. The anti-Id mAbs which recognize combining site-associated idiotopes (Ids) reverse the blocking effect of the anti-Cs mAb R45-45-11 on Cs immunosuppression in vitro. The sequences of the variable regions of heavy and light chain of one anti-Id mAb were determined. X-ray analysis of the corresponding Fab fragment, either alone or complexed with the Fab fragment of the Id, is currently in progress.
A sensitive and specific two-site ELISA was developed for human granulocyte-macrophage colony-stimulating factor (huGM-CSF) based on monoclonal antibodies (mAbs) which have been selected for high affinities and different epitope specificities. Using a cocktail of three mAbs, both for coating and, in their labeled form, for detection, a major increase in sensitivity was achieved (20-fold) compared to a two-site assay employing two different mAbs (one for coating and one for detection). The assay is as sensitive as the most sensitive biological assays. Recombinant mammalian cell expressed and natural huGM-CSF can be reliably detected down to 100 pg/ml (7 pmol/l). In contrast to conventional bioassays, the ELISA is highly specific for huGM-CSF and does not detect other human lymphokines. Results from quantification of recombinant and natural huGM-CSF in ELISA and bioassay correlate.
Abstract. This study reports two modifications of the Platelet Suspension Immunofluorescence Test which make it more convenient to use for the rapid identification of platelet‐specific antibodies and for screening individuals if platelet donors of a particular type are urgently required. Platelets frozen both before and after paraformaldehyde (PFA) fixation were compared with fresh PFA‐fixed platelets using anti‐PLA1 and anti‐HLA antisera. Further, a comparison was made between the results of the test when performed in tissue culture trays or in tubes as originally described. Platelets, prefixed with PFA and then frozen appeared similar in all respects to fresh PFA‐fixed platelets with no loss of antigenicity and no non‐specific fluorescence. Although platelets fixed after frozen storage were also satisfactory, they were less convenient to use and lost some brilliance in staining. When the test was performed in tissue culture trays, there was no loss in sensitivity, and the volume of antiserum used was halved. However, the main advantage was the efficiency and ease with which the test could be performed, especially when handling large numbers of samples.