Clinical and experimental study on fatty acid composition of bone marrow lipid in hematologic disorders.
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Biomedical subjects
Publications and source records attributed to T Sumida.
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The I-J determinant of membrane glycoprotein is known to be expressed exclusively on suppressor T cells (TS), which have a crucial role in the regulation of immune responses. I-J also comprises part of the soluble factor (TSF) with suppressor activity which is secreted from TS. Gene-mapping experiments have indicated that the I-J gene lies between the I-A and I-E subregions of the mouse major histocompatibility complex (MHC) and is defined by the H-2 congeneic pair, that is, B10.A(3R) and B10.A(5R). In fact, antibodies raised in the reciprocal combinations of B10.A(3R) and B10.A(5R) define the I-Jb and I-Jk alleles, and are able to detect the I-J determinants on TS and TSF. Biochemical and functional analyses, using I-J-positive TS clones and hybridomas, have demonstrated that monoclonal anti-I-J antibodies precipitate I-Jk or I-Jb with a relative molecular mass of 25,000-28,000 (25-28K) and that the I-J+ molecule mediates the restriction specificity of TSF in association with an antigen-binding protein (45K). However, molecular genetic studies on the I-J gene reveal no genetic difference between B10.A(3R) and B10.A(5R) and also that there is no room to accommodate a gene encoding I-J in the expected I region. These discrepancies between the molecular genetic and serological/functional data require explanation. Here we demonstrate that TS and TSF expressing I-J of the host type were produced by fully allogeneic bone marrow cells of donor origin in chimaeric mice, when the chimaeras received the host antigen-presenting cells (APC) at the time of immunization. The results show that APC are necessary for the activation and clonal expansion of TS and also support the notion that I-J is an idiotypic determinant of the recognition component of TS and TSF.
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OBJECTIVE: To evaluate the role of Fas-Fas ligand system-mediated apoptosis in the sialoadenitis and interstitial nephritis of Sjögren's syndrome. METHODS: The expression of Fas antigen and Fas ligand in sialoadenitis and interstitial nephritis was examined by immunoperoxidase staining and the reverse transcriptase-polymerase reaction (RT-PCR) in patients with Sjögren's syndrome and in normal subjects. The appearance of DNA strand breaks during apoptosis was detected in the tissue by DNA nick end labeling methods. RESULTS: In patients with severe sialoadenitis, Fas antigen was strongly expressed on the ductal epithelial cells. In contrast, Fas antigen was not seen in the minor salivary glands of normal subjects nor in patients with mild sialoadenitis. In patients with massive mononuclear cell infiltration, some of the infiltrating cells showed the Fas ligand. In patients with interstitial nephritis associated with Sjögren's syndrome, Fas was expressed on the tubular epithelial cells, while such expression was not observed in control subjects without interstitial nephritis. In the patients with interstitial nephritis, some of the infiltrating cells showed the Fas ligand. Apoptotic changes were observed in the ductal epithelial cells, tubular epithelial cells and some infiltrating cells by DNA nick end labeling methods. mRNA for the Fas antigen and Fas ligand was found to be expressed in the labial salivary glands from all SS patients by RT-PCR. CONCLUSION: The findings of this study suggest that the Fas-Fas ligand system may play a role in the pathogenesis of the sialoadenitis and interstitial nephritis of Sjögren's syndrome.