Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: EC:3.4.22.65 (Der p 1)
346 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The induction of anergy in T cells is believed to be the result of triggering of the TCR in the absence of adequate costimulation mediated through the interaction of CD28 and its ligands, CD80 and CD86. Here, we demonstrate that stimulation of human group I allergen in Dermatophagoides pteronyssinus extract (Der p 1)-specific CD4+ Th2-like T cell clones with Der p 1-derived peptides in the absence of professional APC results in a state of nonresponsiveness. The induction of anergy occurred despite the expression of high levels of CD28, CD80, and CD86 on the surface of the T cell clones and was not prevented by the addition of anti-CD28 mAb. The anergic, Der p 1-specific, Th2 cells failed to mobilize calcium from intracellular stores, to proliferate, and to produce IL-2, IL-4, IL-13, GM-CSF, and TNF-alpha following optimal stimulation with Der p 1-derived peptide and autologous APC. However, they mobilized intracellular calcium following stimulation with Ca(2+)-ionophore and produced all of the above cytokines, including IFN-gamma, when stimulated with phorbol ester and Ca2+ ionophore. These results indicate that the anergic T cell clones are capable of responding to signals circumventing the TCR/CD3 complex activation pathway. In contrast to T cell clones optimally activated with peptide and APC, anergic T cells failed to induce IgG4 and IgE synthesis when cocultured with B cells, even in the presence of exogenous IL-4 or IL-13. Anergic T cells expressed normal levels of CD40L, suggesting that their inability to help in Ig production by B cells is due to conditions other than a lack of expression of this molecule. Finally, exogenous IL-2 restored the helper function of anergic Th2 T cells for IgE production by B cells, which was greatly enhanced by the addition of IL-4 or IL-13. These data suggest that induction of anergy in allergen-specific Th2 T cells by allergen-derived peptides may play an important role in the successful desensitization of allergic patients.
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PMID:Peptide-induced anergy in allergen-specific human Th2 cells results in lack of cytokine production and B cell help for IgE synthesis. Reversal by IL-2, not by IL-4 or IL-13. 759 75

Allergens from the house dust mite Dermatophagoides pteronyssinus are a major cause of human respiratory diseases, including asthma. In order to help in understanding the early events in allergen sensitization, a murine model of allergic respiratory disease was developed. Mice were immunized by intranasal inoculation of Der p 1 or Der p 2 on days 0, 3, 7, 10, 14, 17, 21 and 29. T cell reactivity was determined using in vitro assays of allergen-specific cytokine production by cells from the spleen, the draining superficial cervical lymph nodes (SCLN) and the non-draining brachial and inguinal nodes. The cytokines assayed in supernatants were IL-4, as a measure of Th2 activation, IL-2 as a measure of Th 1 activation, and IL-3/GM-CSF as an overall marker of T cell stimulation. There was evidence of local and systemic T cell activation by day 7, with the release of IL-2 and of IL-3/GM-CSF by SCLN and spleen cells, respectively. IL-4 production by SCLN and spleen cells was not evident until day 21. T cell sensitization in non-draining node groups was not detected. Intradermal skin tests were performed at the above specified times and positive wheal responses indicated that specific IgE was present from day 3. The above data suggest that respiratory immunization to allergen is rapid and is associated with early systemic sensitization. In this model both Th1 and Th2 responses were evident, with the Th1 response occurring early and the Th2 following after repeated immunizations.
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PMID:Immunologic responses following respiratory sensitization to house dust mite allergens in mice. 872 6

Endogenous proteolytic enzymes have been shown to be potential sources of airway inflammation inducing proinflammatory cytokine release from respiratory epithelial cells; however, whether any of the exogenous proteases from important allergen sources such as the house dust mite present in our environment behave in a similar fashion is unclear. To this end, we have investigated whether the mite cysteine and serine proteolytic allergens, Der p 1 and Der p 9, respectively, induced cytokine production from primary human bronchial epithelial cells and from the epithelial cell line BEAS-2B. Cells were exposed to mite proteases, and cells or supernatants were assayed for cytokine release, cytokine mRNA expression, and modulation of intracellular calcium ion concentration. Both proteases induced concentration- and time-dependent increases in the release of granulocyte-macrophage (GM)-CSF, IL-6, and IL-8 as well as an increase in the expression of IL-6 mRNA. Cytokine release and mRNA expression were first observed at 8 h and 2 h after protease exposure, respectively. The minimum concentration of each protease that was required to stimulate GM-CSF, IL-6, and IL-8 release was approximately 10 ng/ml. Cytokine release was initiated by 1 to 2 h of protease exposure, although maximum concentrations were detected only after a 24-h incubation. IL-6, but not IL-8 and GM-CSF, was shown to be degraded by both proteases at concentrations of > 2 microg/ml. The proteases also stimulated changes in the intracellular calcium ion concentration. All mite protease-induced phenomena were inhibited using appropriate protease inhibitors. These results suggest that the proteolytic activity of an allergen may stimulate the release of proinflammatory cytokines from human bronchial epithelium.
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PMID:Dust mite proteolytic allergens induce cytokine release from cultured airway epithelium. 975 88

A disintegrin and metalloprotease (ADAM) proteins have wide ranging functions, including proteolytic cleavage of cell surface molecules, cell fusion, cell adhesion and intracellular signalling. Recent evidence suggests the involvement of ADAM8 in allergic responses. For instance, ADAM8 is amongst a number of genes up-regulated in experimentally induced asthma in animals. In order to further define the involvement of ADAM8 in allergic responses, we sought in the first instance to examine its distribution on human peripheral blood B cells, resting and activated T cells, monocyte subsets and monocyte derived dendritic cells. Here we demonstrate for the first time ADAM8 protein expression on B cells and dendritic cells, and its higher expression on CD14(2+)CD16(-) monocytes compared to CD14(+)CD16(+) cells. Immature dendritic cells expressed low levels of ADAM8 when treated with a combination of GM-CSF and IL-4, but stimulation with LPS resulted in a higher level of expression, which was TLR-4 independent. Up-regulation of ADAM8 expression on dendritic cells was also observed after stimulation with TNF-alpha, but not after stimulation with anti-CD40. The demonstration of ADAM8 expression on these cells provides an opportunity for addressing the potential role of inhaled protease allergens, such as Der p 1, in modulating ADAM8 functions, particularly with regards to innate immune responses by dendritic cells and IgE synthesis by B cells.
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PMID:The detection of ADAM8 protein on cells of the human immune system and the demonstration of its expression on peripheral blood B cells, dendritic cells and monocyte subsets. 1727 Jul 7

House dust mite (HDM) allergens are the most common allergens involved in the induction of IgE-mediated hypersensitivity. Recently, epicutaneous sensitization with HDM allergens has been emphasized in the development of atopic dermatitis (AD); however, direct stimulation of canine keratinocytes by mite allergens has not been well investigated. In the present study, we investigated the effects of Der f 1, a major allergen of Dermatophagoides farinae, on cytokine and chemokine gene expression in a canine keratinocyte cell line, CPEK. CPEK constitutively expressed mRNA for TNF-alpha, IL-12p35, IL-18, GM-CSF, TGF-beta, IL-8/CXCL8, TARC/CCL17, CTACK/CCL27 and MEC/CCL28. Of all the cytokines and chemokines investigated in CPEK, transcription levels of GM-CSF, IL-8/CXCL8 and TNF-alpha mRNA were significantly enhanced by stimulation with Der f 1. The present results suggest that Der f 1 can directly augment inflammatory cytokine and chemokine production from keratinocytes, and may initiate allergic inflammation independently of Type-I hypersensitivity.
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PMID:House dust mite major allergen Der f 1 enhances proinflammatory cytokine and chemokine gene expression in a cell line of canine epidermal keratinocytes. 1944 88