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B Chain

Publications and source records attributed to B Chain.

At least 19 recordsLinked to original sources

The functional interactions between CD98, beta1-integrins, and CD147 in the induction of U937 homotypic aggregation.

CD98 is expressed on both hematopoietic and nonhematopoietic cells and has been implicated in a variety of different aspects of cell physiology and immunobiology. In this study, the functional interactions between CD98 and other adhesion molecules on the surface of the promonocyte line U937 are examined by means of a quantitative assay of cell aggregation. Several of the CD98 antibodies induced homotypic aggregation of these cells without affecting cellular viability or growth. Aggregation induced by CD98 antibodies could be distinguished from that induced by beta1-integrin (CD29) ligation by lack of sensitivity to EDTA and by increased sensitivity to deoxyglucose. Aggregation induced via CD98 and CD29 could also be distinguished by the pattern of protein tyrosine phosphorylation induced. Some CD29 antibodies partially inhibited CD98-induced aggregation, and these antibodies were neither agonistic for aggregation nor inhibitors of beta1-integrin binding to substrates. Conversely, some CD98 antibodies were potent inhibitors of CD29-induced aggregation. Antibodies to beta2 integrins also partially inhibited CD98-induced aggregation. Unexpectedly, 2 antibodies to CD147, an immunoglobulin superfamily member whose function has remained unclear, were also potent inhibitors of both the aggregation and the protein tyrosine phosphorylation induced via CD98 ligation. The results of this study support a central role for CD98 within a multimolecular unit that regulates cell aggregation.

Antibodies↗

Self/nonself discrimination among immunoregulatory (CD4) T cells.

This review covers work on immunological tolerance from 1962 up to the present, focusing on the Th, CD4+ compartment of the immune system. The principle mechanism of tolerance is identified as deletion, occurring centrally and in the periphery. In the periphery, deletion is the normal response of CD4 T cells to soluble monomeric proteins that occurs when activation (mainly of dendritic cells) is avoided. Thus activation and the signals which induce it are crucial to understanding S/NS discrimination, as has long been known. The thymus is important as the site where new T cells first see self-antigens, and as one largely shielded from activation, although deletion in the thymus and the periphery has the same threshold. The relative contribution of dendritic cells and developing T cells to deletion in the thymus remains unclear. Activation induced cell death, containment, anergy and deviation constitute subsidiary mechanisms, and sequestration/neglect is important in limiting the scope of deletion.

Animals↗

Antimicrobial and cytotoxic activity of hypochlorous acid: interactions with taurine and nitrite.

OBJECTIVE: HOCl, a major bactericidal product of neutrophil MPO-halide system reacts with taurine to form taurine chloramine (TauCl), a less toxic anti-inflammatory mediator. Recently, it has been reported that HOCl may also react with nitrite (NO2-), a major end-product of nitric oxide (NO) metabolism, to form very active oxidant, nitryl chloride (NO2Cl). The present study was conducted to elucidate the effect of nitrite on bactericidal and some immunoregulatory properties of HOCl and TauCl. MATERIALS: TauCl was prepared from NaOCl and taurine. The reaction was carried out at pH 5.0 and pH 7.4, in the presence or absence of nitrite. All reactions were monitored by UV absorption spectra. METHODS: Bactericidal activity of HOCl and TauCl in the presence of nitrite was tested by incubation of E. coli with the compounds and determined by the pour-plate method. To test the effect of the compounds on activity of inflammatory cells, murine peritoneal neutrophils (PMN) and macrophages were used. The cells were activated in vitro with either LPS, IFN-gamma or zymosan and the production of following mediators was measured: reactive oxygen species using luminol-dependent chemiluminescence; nitric oxide by Griess reaction; TNF-alpha using capture ELISA. In addition, we tested the effect of HOCl and TauCl on activity of myeloperoxidase (MPO). RESULTS: At physiological pH nitrite reacts with HOCl but not with TauCl. This reaction was abolished in the presence of taurine. Nitrite prevented HOCl-mediated bacterial killing, inhibition of MPO activity, cellular cytotoxicity and inhibition of TNF-alpha production. Nitrite did not affect any activity of TauCl. CONCLUSION: We have shown that nitrite may react in vitro with HOCl but not with TauCl, to form new biologically active product(s). We did not confirm the hypothesis that a product of HOCl reaction with nitrite is more toxic than HOCl. To the contrary, we found that nitrite diminished bactericidal and immunoregulatory properties of HOCl. In vivo, nitrite will also compete with taurine for reaction with PMN-released HOCl. Nevertheless, due to high concentration of taurine in PMN cytosol, formation of TauCl will be a major regulatory mechanism of MPO-halide-system.

Animals↗

How can dendritic cells cause autoimmune disease?

Immune responses against foreign antigens are initiated and controlled by dendritic cells (DCs). Accumulating evidence suggests that autoimmunity, involving T cells directed against self, can also be primed by DCs. We propose that DCs could induce autoimmunity following their differentiation by certain cytokines, or because of intrinsic defects in genes controlling DC function. Both processes result in DCs that behave deviantly.

Animals↗

IFN-gamma down-regulates MHC expression and antigen processing in a human B cell line.

IFN-gamma is a crucial mediator in the induction of cell-mediated Th1-type responses but is predominantly a negative regulator of B cell differentiation and proliferation. This cytokine is therefore a key factor in determining Th1 vs Th2 differentiation. This study investigates the action of IFN-gamma in modulation of HLA-DR expression and Ag presentation by EBV-transformed human B cell lines. In contrast to its action on the monocyte/macrophage, IFN-gamma down-regulates surface MHC expression on these B cells, and this regulation is posttranscriptional. In parallel with MHC down-regulation, there is a reduced capability to process and present exogenous protein and peptide Ag to T cell hybridomas. IFN-gamma does not change the rates of fluid phase endocytosis or exocytosis in this model system but correlates with an up-regulation of the lysosomal enzymes cathepsins B and D.

Animals↗

The antigen-presenting environment in normal and human papillomavirus (HPV)-related premalignant cervical epithelium.

The activation of HPV-specific T cells within the cervical microenvironment is likely to play an important part in the natural history of cervical intraepithelial neoplasia (CIN). The extent and the type of T cell activation will depend critically on the expression of MHC, costimulatory cell surface molecules and cytokines by keratinocytes and Langerhans cells within the cervical lesion. Expression of MHC class II (HLA-A-DR and -DQ), costimulatory/adhesion molecules (CD11a/18, CD50, CD54, CD58 and CD86) and cytokines (tumour necrosis factor-alpha (TNF-alpha) and IL-10) was therefore investigated by immunohistochemistry in normal squamous epithelium (n = 12), low-grade (n = 23) and high-grade (n = 18) squamous intraepithelial lesions of the cervix. CIN progression was associated with de novo expression of HLA-DR and CD54, and increased expression of CD58 by keratinocytes. However, significantly, there was no expression of any adhesion/costimulation molecule by epithelial Langerhans cells in any cervical biopsy studied. Furthermore, TNF-alpha, a potent activator of Langerhans cells, was expressed constitutively by basal keratinocytes in normal cervix (12+/12). but expression of this cytokine was absent in a number of CIN samples (20+/23 for low-grade, 12+/18 for high-grade CIN). Conversely, the suppressive cytokine IL-10 was absent in normal epithelium (0+/12), but was up-regulated in a number of CIN lesions (12+/23 for low-grade; 8+/18 for high-grade CIN). The restricted expression of costimulation/adhesion molecules and the nature of the cytokine microenvironment within the epithelium may act to limit effective immune responses in some CIN lesions.

Antigen Presentation↗

Regulation of murine dendritic cell functions in vitro by taurine chloramine, a major product of the neutrophil myeloperoxidase-halide system.

Taurine chloramine (TauCl) is a major chloramine generated in activated neutrophils as a result of the reaction of highly toxic hypochlorous acid and taurine, the most abundant free amino acid in cytosol. In this study we have tested the influence of TauCl on the properties of murine dendritic cells (DC), the major cell population involved in the initiation of an adaptive immune response against pathogenic organisms. N418+, MHC II+, B7-2+ dendritic cells, generated from the mouse bone marrow cells cultured in the presence of granulocyte-macrophage colony-stimulating factor, were stimulated by interferon-gamma and lipopolysaccharide to produce nitric oxide, reactive oxygen species, interleukin-6 (IL-6), tumour necrosis factor-alpha, and IL-12, in the presence of different doses of TauCl. TauCl differently inhibited the generation of these inflammatory mediators in a dose-dependent manner. Furthermore, TauCl selectively modulated the ability of DC to induce the release IL-2 and IL-10 from T cells. These results suggest that neutrophil-derived mediators, such as TauCl, at a site of inflammation, may affect the functions of sentinel DC and macrophages, and play a role in maintaining the balance between the inflammatory response and the induction of an antigen-specific immune response.

Animals↗

Characterization of soluble factors from cultures of premalignant cervical epithelium.

PURPOSE: Immune responses within the cervical microenvironment are likely to play an important role in the natural history of premalignant lesions but the pattern of this response and how it is regulated has not been documented in detail. METHODS: Explants of premalignant cervical epithelium were cultured in vitro for 24 hours. The culture supernatants were assayed for the presence of IL-1alpha, IL-10, IL-12 and TNF-alpha by ELISA. Aliquots of each supernatant were also added to a CD3-dependent T cell proliferation assay. RESULTS: The pattern of cytokines found in different samples was heterogeneous and no significant correlation was observed between the various cytokines examined. The functional effects observed were also diverse, with some supernatants showing strong inhibitory T cell activity, while others were stimulatory. CONCLUSION: Our results document the heterogeneity of the local cytokine microenvironment of premalignant cervical lesions, which may play a role in regulating the immune response associated with such lesions and hence influence clinical outcome.

CD3 Complex↗

In vivo priming of T cells against cryptic determinants by dendritic cells exposed to interleukin 6 and native antigen.

T cells recognizing poorly displayed self determinants escape tolerance mechanisms and persist in the adult repertoire. The process by which these T cells are primed is not clear, but once activated, they can cause autoimmunity. Here, we show that dendritic cells treated with interleukin 6 (IL-6) process and present determinants from a model native antigen in a qualitatively altered hierarchy, activating T cells in vitro and in vivo against determinants that were previously cryptic because of poor display. IL-6 does not induce conventional maturation of dendritic cells but alters the pH of peripheral, early endosomal compartments and renders the cells more susceptible to killing by chloroquine. Acidification of endosomes by ouabain mimics the effect of IL-6 and allows processing of the same cryptic determinant. These results suggest that cytokines such as IL-6 could initiate and help to propagate an autoimmune disease process by differentiating dendritic cells into a state distinct from that induced by normal maturation.

Animals↗

Isolation and N-terminal sequence determination of a novel gamma/delta T cell surface antigen.

An antigen complex unique for porcine gamma/delta T cells has previously been identified using the monoclonal antibodies MAC319 and MAC320. Here we use digestion with the proteolytic enzyme bromelain to selectively release the MAC319 antigen as a soluble fragment, for further characterisation. A cytofluorometric inhibition assay was developed to follow the purification of this fragment, as the conformation sensitivity of the MAC319 epitope prevented the use of immunoblotting techniques. The antigen has been purified using a combination of anion-exchange and hydrophobic-interaction columns, followed by separation on a size-exclusion column. Fractions from the size-exclusion column containing the antigen consisted of one major band at Mr 95,000. This species was shown to be specifically absorbed onto MAC319-coupled Sepharose, thereby identifying the MAC319 antigen. N-terminal amino acid sequencing of this band has revealed a previously unidentified sequence. This fragment was also shown to be glycosylated, most likely with a single sugar moiety. Enzymatic removal of the sugars showed that they did not appear to be necessary for binding of the polypeptide to the MAC319 antibody.

Animals↗

Regulation of cathepsin E expression during human B cell differentiation in vitro.

Cathepsin E is an aspartic proteinase which has been implicated in antigen processing in the class II major histocompatibility complex pathway. In this study we show that cathepsin E, measured at both the protein and message level, is up-regulated late in human B cell activation. The implications of this observation in terms of cathepsin E function are discussed.

Adolescent↗

Nitric oxide up-regulates the release of inflammatory mediators by mouse macrophages.

Nitric oxide (NO) plays a key role in mediating macrophage cytotoxicity towards different targets, including tumoral cells and intracellular pathogens. However, its role in macrophage immunoregulation is less well defined. In this study, we have investigated the effect of altering NO levels on the production by mouse macrophages of cytokines, and reactive oxygen intermediates as measured by luminol-dependent chemiluminescence. Our results demonstrate that NO can enhance the release of both tumor necrosis factor-alpha and interleukin-1 alpha, and chemiluminescence. Thus, in addition to acting as a powerful effector molecule in mediating cytotoxic activities of mouse macrophages, NO can play a role in enhancing the production of a variety of other inflammatory mediators, and thus can contribute both directly and indirectly to the immunopathology of macrophage-dependent inflammation.

Animals↗

Strategies for studying mouse and human immune responses to human papillomavirus type 16.

Cytotoxic T lymphocytes (CTL) are an important protective mechanism in viral infection and can be effective against tumours. We have investigated the tumour-associated E6 and E7 genes of human papillomavirus type 16 as CTL targets. In H-2b mice we have defined epitopes in E6 and E7 which can readily generate CTL in vivo and we have shown that HLA-A2.1 transgenic mice can generate an HLA-A2.1-restricted response. We have been unable to reveal a primed CTL response in humans. These paradoxical findings imply that human papillomavirus may fail to stimulate a systemic CTL response and/or employ strategies for evading or down-regulating such a response.

Amino Acid Sequence↗

Immune response to human papillomavirus type 16 E6 gene in a live vaccinia vector.

Immunization of mice with a recombinant vaccinia virus expressing the human papillomavirus type 16 (HPV-16) E6 gene elicits specific antibody, proliferative and cytotoxic T lymphocyte responses. T and B cell epitopes were mapped by using synthetic peptides. This study provides the background to future investigation aimed at developing prophylactic and therapeutic vaccines against HPV-16 infection and cervical cancer.

Amino Acid Sequence↗

Multi-level regulation of lysosomal gene expression in lymphocytes.

The expression of the gene coding for the lysosomal enzyme, beta-glucuronidase (Gus), was examined in functionally distinct T, B and plasma cell lines. Each of the different groups of cells had different intracellular levels of active Gus enzyme and numbers of Gus mRNA copies per cell. Analysis of the molecular forms of Gus mRNA and protein by Northern and Western blotting revealed that the different types of cells all produced a single mature 2.7 kb transcript and a 73 kDa polypeptide. However, the utilisation of the Gus mRNA to produce the Gus antigen, and the subsequent posttranslational processing of the polypeptide to generate the mature, enzymically active Gus, were found to be cell type-specific. Control of the functional expression of the Gus gene is thus exerted at both the transcriptional and translational levels, and appears to differ between different types of lymphocyte.

Animals↗

Analysis of the cellular requirements for the binding of exogenous peptides to MHC class II molecules.

The cellular mechanism regulating the binding of exogenous peptides to MHC class II molecule is still an object of controversy. In order to study the cellular requirements of peptide binding we have set up an indirect fluorescence assay that enables us to detect quantitatively peptide/MHC class II complexes on the cell surface of the mouse B lymphoma A20. The absence of binding on several MHC class II-negative cell lines and the inhibition of binding in the presence of competitor peptides or in the presence of a polyclonal serum against MHC class II molecules confirmed the specificity of the assay. A panel of pharmacological and physical agents was then used to determine the mechanism of this regulation. Binding was not significantly affected by vinblastine or cycloheximide and was affected only to a small extent by chloroquine or azide. In contrast to the long half-life previously reported for soluble complexes, we found that the half-life of a peptide/MHC class II complex expressed on A20 was shorter than 3 hr, suggesting that peptide binding might be regulated at the cellular level. The energy of activation of peptide binding, estimated from the temperature dependence of the rate of peptide binding, was decreased above 27 degrees C, suggesting that enhanced peptide binding to MHC class II molecules might depend on the fluidity of the cell membrane lipids.

Adenosine Triphosphate↗

Lysosomal enzyme transfer from different types of lymphoid cell.

The direct transfer of certain lysosomal enzymes during cell-to-cell contact between normal lymphocytes and enzyme-deficient recipient cells has previously been reported in vitro and may play an important role in the correction of lysosomal storage diseases by bone marrow transplantation in vivo. In the present study we have used a number of different T, B, and plasma cell lines to examine the expression and immunological specificity of the transfer of the lysosomal enzyme, beta-glucuronidase (Gus). Each of these groups of cell had differing intracellular and secreted levels of Gus activity, which were nevertheless similar within each group. Dermal fibroblasts deficient in the Gus enzyme acquired substantial amounts of additional activity when they were cultured together with the T cells, the B cells, or the plasma cells. This occurred by the direct transfer of Gus from all three types of cell. In addition, with plasma cells, which had very high intracellular enzyme activity and also secreted high levels of Gus into their culture medium, the secreted enzyme was readily internalized by the fibroblasts via the mannose 6-phosphate receptor (MPR). It was notable that the purified endogenous enzymes from plasma cells as well as from B cells, but not from T cells, were also endocytosed by the fibroblasts utilizing this receptor-mediated process. Although the Gus activity from all the cell lines examined had the same molecular size, polyacrylamide electrophoresis and isoelectric focusing patterns showed that the immunologically distinct types of lymphoid cell have characteristic, unique pathways of post-translational lysosomal enzyme processing. These results show that the transfer of lysosomal enzymes from lymphoid cells can occur by two distinct mechanisms, both likely to have important roles in enzyme replacement therapy.

B-Lymphocytes↗

Isolation and characterization of a new murine MHC class II transcription mutant cell line.

We have isolated and characterized a new MHC class II transcription mutant cell line, called UV. This cell line was derived from the mouse B lymphoma A20 by UV light-induced mutagenesis and immunoselection for the loss of surface MHC class II molecules. It expresses only 5% of the level of MHC class II molecules on A20 and this is associated with a similar reduction of class II specific mRNA. This defect cannot be restored by the MHC class II transcription inducers, IL-4 and IFN gamma, confirming that the mutation acts at the transcription level. The mutation also affects MHC class I expression, but the transcription of class I molecules is not affected. In contrast, the expression of other markers, such as the invariant chain and the surface immunoglobulins G and M, is not modified. Such a variant should prove useful for the study of the transcription factors involved in the regulation of MHC class II expression.

Animals↗