Complete variable region sequence of a nonfunctionally rearranged kappa light chain transcribed in the nonsecretor P3-X63-Ag8.653 myeloma cell line.
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Biomedical subjects
Publications and source records attributed to G Wick.
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Unlike many other tumors, experimentally induced Rous sarcomas in chickens have a definite tendency to regress spontaneously. Regression is under genetic control, but it is immunologically mediated although the target antigens that stimulate an immune response are unknown. Tumor cells in regressing sarcomas were found to express class II major histocompatibility complex (Ia-like) antigens while tumor cells from progressing sarcomas were negative. This suggests that the induction of Ia-like antigen expression has a role in the initiation or perpetuation of regression, similar to that postulated for class II antigen expression in a variety of autoimmune diseases.
The expression of major histocompatibility complex (MHC) class I antigens in ontogenesis and the distribution of B-F+ cells, defined by means of a monoclonal antibody, were studied by indirect membrane immunofluorescence tests on suspensions of thymus, bursa, spleen, peripheral blood lymphocytes (PBL) and red blood cells (RBC) from 18-day-old chicken embryos and chickens from 1-90 days after hatching. At 18 days of incubation and at the first day after hatching, RBC, PBL, and the cells from bursa and thymus are negative. The percentage of positive PBL and bursal cells increases up to 9 days after hatching. By 2 weeks after hatching almost 100% of the RBC, PBL, bursa, and spleen cells were positive whereas the thymus showed only 20% positive cells. Analysis on 4-micron-thick, frozen acetone-fixed tissue sections of thymus showed that medullary cells are positive, while the cortical area is negative. The graft-versus-host (GvH) competence of these thymus subpopulations was compared after sorting by the fluorescence-activated cell sorter and injection into MHC incompatible embryos. GvH reactivity was associated primarily with the B-F+ population. Double staining studies with peanut agglutinin (PNA)-fluorescein isothiocyanate and a rabbit-anti-Ig tetramethyl isothiocyanate-conjugate proved that the PNA- thymocytes are identical with B-F+ thymocytes.
Uptake of dioctadecylindocarbocyanine (DiI)-labelled low density lipoproteins (LDL) by peripheral blood lymphocytes (PBL) from young healthy donors has been characterized by flow cytometric analysis. The receptor positive cells were primarily (greater than 70%) T cells. Saturation and competition studies were performed with freshly isolated PBL as well as after a 2-3-day incubation in cholesterol-free medium. In both cases uptake was specific for LDL and not high density lipoprotein. It was also abrogated by chemical modification of apo B, and was not shown by PBL from a patient with familial hypercholesterolemia. DiI-LDL-uptake by cells from elderly donors was compared with that of PBL from young donors. There was a clear increase in uptake by freshly isolated PBL from aged donors which was shown not to stem from underlying "sickness". In contrast, uptake by pre-incubated cells was very variable, in terms of percentage receptor-positive cells and the level of uptake by those cells. However, LDL rescued mevinolin-suppressed mitogen responses from both old and young donors indicating that there is no impairment of uptake or degradation of LDL by PBL from the elderly.
Development of organ-specific autoimmune diseases depends on both an abnormal immune regulation and a genetically determined primary susceptibility of the target organ to the autoimmune attack. In addition to the essential genetically determined prerequisites there are also facultative, modulating factors that influence the outcome of an autoimmune disease. This concept is exemplified in the Obese strain (OS) chicken model which develops a spontaneous autoimmune thyroiditis closely resembling human Hashimoto disease. Three modulating factors are specifically addressed, viz. (a) the lower threshold of OS thyroid epithelial cells for the gamma-interferon-induced MHC class II antigen expression as compared to normal controls, (b) the decreased glucocorticoid tonus of the OS and (c) the presence of a new endogenous virus (ev 22) locus in the OS that has so far not been found in any normal strain and which seems to influence the glucocorticoid-mediated immunoregulatory process.
The enhanced T cell reactivity (ConA hyperresponsiveness and IL 2 hypersecretion) of spleen lymphocytes of Obese strain (OS) chickens with spontaneous autoimmune thyroiditis has recently been shown to be due to a defect in macrophage-derived non-specific suppressor factors that regulate IL 2 secretion and IL 2-promoted T lymphoblast proliferation in normal healthy animals. In the present study, we present several lines of evidence that the increased T cell response of peripheral blood lymphocytes (PBL) of OS chickens is due to mechanisms entirely different from the described dysregulation of splenic T cells: 1) In contrast to the splenic macrophages, peripheral blood monocytes of OS animals are not deficient in the production of IL 2 antagonistic activity (IAA); 2) therefore, cocultivation of PBL from OS and Normal White Leghorn (NWL) chickens in communicating culture chambers did not abrogate the difference in Con A response as previously observed with spleen lymphocytes. 3) Immunofluorescence with a monoclonal antibody (INN CH 16) against the chicken IL 2 receptor revealed enhanced numbers of mitogen activatable T cells in OS PBL but not OS spleen lymphocytes. 4) After prolonged Con A stimulation of PBL, OS and NWL lymphoblasts did not differ from each other in functional aspects. In contrast to this, Con A lymphoblasts from OS spleens exhibited enhanced staining with INN CH 16 in parallel with an increased proliferative response to IL 2. Thus, the primary T cell dysfunction involved in the development of autoimmune disease in OS chickens is the result of at least two separate regulatory defects.
A high density lipoprotein (HDL) receptor/binding site has been identified on peripheral blood lymphocytes, and some of its properties were compared with those of HDL receptors on other cell types. Binding studies were performed using fluorescent (dioctadecylindocarbocyanine)-labelled HDL (DiI-HDL) and analyzed by fluorescence microscopy and quantitative flow cytometry. Uptake of low levels of DiI-HDL during a 2 h incubation at 37 degrees C was a property of all lymphocytes, i.e. not of one particular subset only. Visual inspection of these cells in the fluorescence microscope revealed both membrane and cytoplasmic fluorescence, indicating that DiI-HDL become internalized during the 2 h incubation; internalization appeared to be a receptor-mediated process. In competitive binding studies, apo E-free HDL competed effectively for DiI-HDL binding, whereas LDL competed very weakly. Two features of DiI-HDL uptake are demonstrated which are unique to lymphocytes: 1) it was enhanced 3-6-fold by inclusion of EDTA in the incubation medium or by incubating in Ca2+/Mg2+ free medium, and 2) it was saturable at 37 degrees C.
We present another patient with the rare disorder of isolated GH deficiency (IGHD) type 1A. The diagnosis was confirmed by the clinical course, serology and genetic structure. Analysis of the post GH treatment serum of this patient with several thoroughly characterized monoclonal antibodies against GH established the presence of polyclonal, high titre and high avidity IgG-class antibodies against GH. These had the ability to neutralize GH as they could inhibit the binding of radiolabelled GH to GH-receptors on IM9 lymphoblastoid cells. DNA restriction mapping indicated a deletion of the GH-N gene and a family DNA pattern that was consistent with the proposed autosomal recessive aetiology of this disorder. These findings explain the inability of this patient to synthesize GH and his total immunological intolerance to GH replacement therapy.
The review presents a concept for the pathogenesis of spontaneous, organ-specific autoimmune diseases that take into account an altered immune regulation, modulating hormonal influences and a genetically determined primary susceptibility of the target organ for the autoimmune attack. The concept is exemplified by means of the Obese strain (OS) chicken model which develops a spontaneous hereditary autoimmune thyroiditis. In respect to the the altered function of the immune system both, MHC associated (Ir) and non-MHC associated genes are involved. The MHC, i.e. a certain haplotype, only plays a modulatory role in determining the frequency and severity of spontaneous autoimmune thyroiditis, while the presence of certain non-MHC associated genes is a absolute prerequisite for the emergence of the disease. The latter is also true for the genetically determined target organ susceptibility, while hormonal factors, notably sex-steroids and glucocorticoids, again only have a facultative, modulatory effect. Only if an appropriate genetic constellation concerning the non-MHC encoded aberrant immunological function and genes coding for the susceptibility of the thyroid gland for the autoimmune process is present, severe autoimmune thyroids develops.
Nine mouse hybridoma cell lines producing monoclonal antibodies (MCA) against human prolactin (hPRL), 19 cell lines against bovine prolactin (bPRL) and one MCA against rat prolactin (rPRL) were established. The MCA were characterized by one- and two-site radioimmunoassays (RIA) as well as indirect immunofluorescence (IIF) and used for epitope mapping of hPRL and immunoradiometric assays (IRMA). Interspecies cross-reactivity studies by RIA revealed two groups of anti-hPRL MCA: seven which reacted only with hPRL and two additionally recognizing bPRL and ovine prolactin (oPRL). The anti-bPRL MCA, which were tested on pituitary sections by IIF could be divided into 17 MCA cross-reacting with the closely related oPRL, and two MCA which showed additional cross-reactions with equine prolactin. The anti-rPRL antibody reacted exclusively with rPRL in direct binding RIA studies. No intraspecies cross-reactions with the closely related protein hormones placental lactogen and GH were detected. To elucidate the antigenic surface of hPRL all MCA directed against hPRL were then used for two-site epitope mapping studies in which pairs of MCA were assessed for simultaneous reaction with the same antigen. The native hormone was incubated with the first, solid-phase bound, so called 'capture MCA', and this complex treated with a second, 125I-labelled 'detection MCA'. Based on the results of these combinations, at least three sterically non-overlapping and (taking RIA cross-reaction studies into consideration) two additional epitopes could be defined.(ABSTRACT TRUNCATED AT 250 WORDS)
In the course of a previous study addressing autoantibody generation in murine models for generalized autoimmune disorders, we observed a nonfunctional immunoglobulin heavy chain transcript in a B cell hybridoma from lupus-prone MRL-Mp-lpr/lpr mice. This transcript, the cDNA sequence of which is presented here, is of general interest for murine immunoglobulin genetics as it cannot be ascribed to any known heavy chain variable region gene (Vh) family by nucleic acid sequence homology criteria and, hence, may represent a new Vh gene family. The sequence showed about equal nucleotide similarity (70-73%) to 3 other Vh gene families (S107, J606, 7183) and less than 65% similarity to members of the remaining 6 Vh gene families. Nucleic acid sequence comparisons with unpublished immunoglobulin sequences uncovered a highly homologous (greater than 95%) functional Vh transcript indicating that the suggested Vh gene family also encodes expressed antibody molecules.
Thyroglobulin autoantibody (Tg-AAb) can be spontaneously produced in vitro with thyroid infiltrating lymphocytes (TIL) collected from Obese strain chickens 3.5 and 4 weeks old. Attempts to enhance Tg-AAb synthesis with two known polyclonal stimulators of immunoglobulin synthesis in chickens, Staphylococcus aureus Cowan strain 1 and dextran sulphate, failed to increase Tg-AAb production in vitro. Spleen cells and peripheral blood lymphocytes obtained from the same chickens as the TIL and older chickens known to produce moderate to high levels of Tg-AAb in vivo did not produce autoantibody either spontaneously or in the presence of polyclonal Ig stimulators with one exception. With this single, exceptional chicken we obtained a small amount of Tg-AAb produced in vitro with spleen cells. This suggests that in the OS chicken TIL, and to a much lesser extent, the spleen, contribute to the total Tg-AAb produced in this model of autoimmune thyroiditis.
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Basal plasma levels of corticosterone and corticosteroid-binding globulin (CBG) have been investigated in Obese strain (OS) chickens afflicted with spontaneous autoimmune thyroiditis (SAT). Corticosterone was determined radioimmunologically, and CBG by using a highly sensitive radioligand saturation assay. OS chickens displayed total corticosterone levels not different from healthy normal White Leghorn (NWL) chickens. CBG, however, was found to be twice as high in OS chickens as compared with their healthy counterparts, irrespective of sex or age. This quantitative difference in the CBG level is not compensated for by either altered affinity or specificity of the molecule. Furthermore, no differences were found in the response of OS and NWL lymphocytes to the suppressive effect of glucocorticoids in vitro. We therefore assume that OS animals are deficient in free, hormonally active corticosterone. An additional indication for such a diminished glucocorticoid tonus was that in vivo treatment of OS chickens with glucocorticoid hormones, thus increasing the free and active hormone fraction, normalizes the T cell hyperreactivity and significantly reduces thyroid infiltration. Possible pathophysiological implications of a diminished glucocorticoid tonus for spontaneous autoimmunity, as well as possible explanations for the beneficial effects of glucocorticoid treatment on the development of SAT, are discussed.