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Involvement of p38 and JNK MAPKs pathways in Substance P-induced production of TNF-alpha by peritoneal mast cells.

Mast cells play a central role in both inflammation and immediate allergic reactions. We have previously shown that Substance P (SP) stimulates TNF-alpha mRNA and protein expression in rat peritoneal mast cells (PMC). In the present paper, we investigated whether the induction of TNF-alpha production by the mast cells agonist involves MAPKs signalling pathways. We found that as early as 5 min after PMC exposure to SP, phosphorylation of p38 MAPK and JNK was induced. On the contrary, phosphorylation of p42/44 MAPK occurred only after a 30 min exposure to SP and did not correlate with SP-induced TNF-alpha production. The highly specific p38 MAPK inhibitor SB203580 and the blocker of PI-3K wortmannin, abolished SP-induced increase in TNF-alpha mRNA and protein levels and showed to reduce the SP-mediated histamine secretion. In addition, wortmannin reduced SP-mediated JNK phosphorylation. The results reveal that the induction of TNF-alpha expression and histamine exocytosis by exposure of rat PMC to substance P requires the activation of p38 and JNK MAPKs pathways. Moreover, they suggest PI-3K as a possible upstream component of JNK pathway in SP-induced inflammatory reactions.

Animals↗

[Effect of experimental herpesvirus infection on morphofunctional state of mast cells].

Mast cells are involved in the reaction of the organism to herpesvirus infection, which manifests by changes in their count, morphology, and function. The onset of infection is characterized by primary activation of mast cells, the peak of disease by suppressed function, and convalescence by secondary activation and stabilization of cell morphology and function. Viral infection running in the presence of immunosuppression caused by cyclophosphamide is characterized by deep persistent suppression of the morphology and functions of mast cells at the peak of disease.

Animals↗

The number and affinity of IgE receptors on dispersed human lung mast cells.

Mast cells obtained by fragmentation of human lung tissue retained the capacity to bind IgE and to respond to immunological challenge. Direct binding studies with radiolabelled IgE enabled quantification of binding parameters of the reaction between IgE and its receptor on human mast cells. The average equilibrium constant was estimated as 1.0 x 10(8) M -1 and the average number of IgE receptors per mast cell as 1.3 x 10(5).

Antibody Affinity↗

Presence of SNAP-25 in rat mast cells.

Mast cells participate in inflammation and allergies by releasing active mediators stored in numerous cytoplasmic granules. Degranulation implies compound exocytosis which involves a combination of granule-granule and granule-plasma membrane fusions. One of the most important proteins in the exocytotic process in neural and endocrine cells is the synaptosomal associated protein of 25 kDa (SNAP-25). In the present study, using a highly specific monoclonal antibody against SNAP-25, we have demonstrated by immunocytochemistry, western blot and immunoelectron microscopy the presence of SNAP-25 in rat peritoneal mast cells. Likewise we localized the protein mainly on the membrane of the secretory granules. Thus while the precise function of SNAP-25 in mast cells remains to be elucidated, it may be envolved in granule-granule fusion needed in degranulation.

Animals↗

MITF is necessary for generation of prostaglandin D2 in mouse mast cells.

Mast cells generate eicosanoids that are linked to asthma and other inflammatory diseases. A basic-helix-loop-helix leucine zipper transcription factor termed MITF is essential for the development of mast cells. Although other substances also linked to inflammatory reactions (such as various proteases and serotonin) require MITF for their expression, the role of MITF in eicosanoid generation has not been studied. We examined eicosanoid generation in bone marrow-derived mast cells (BMMCs) of tg/tg mice that lack MITF. Most eicosanoids generated by BMMCs are either prostaglandin (PG) D2 or leukotriene C4. The former is synthesized via the cyclooxygenase pathway, whereas the latter is synthesized via the 5-lipoxygenase pathway. In response to stimulation with IgE and antigens, BMMCs of tg/tg mice synthesized leukotriene C4 normally. However, neither immediate nor delayed PGD2 production was detected in these BMMCs. This indicates that MITF is a transcription factor that specifically activates the cyclooxygenase pathway, but not the 5-lipoxygenase pathway. Significant decreases in expression of hematopoietic PGD2 synthase (hPGDS, a terminal synthase for PGD2) were observed at both mRNA and protein levels in tg/tg BMMCs. MITF transactivated the hPGDS gene via a CACCTG motif located in the promoter region. MITF appeared to be essential for generation of PGD2 by enhancing expression of the hPGDS gene in BMMCs.

Amino Acid Motifs↗

Triggering of mast cells.

Mast cells secrete histamine, glycosaminoglycans, arachidonic acid derivatives, enzymes, and possibly whole granules. Physiologic stimuli include the bridging of membrane-bound IgE molecules by antigen, the anaphylatoxins C5a and C3a, and the neurotransmitter acetylcholine. Evidence is presented that a 'spontaneous' histamine release may be of biological significance. While the actual trigger of this process is unknown, it appears to be regulated by the concentration of histamine in the environment. It is suggested that the spontaneous release is responsible for maintaining a certain histamine concentration in the body fluids. After mast cell stimulation by IgE cross-linking or drugs changes in lipid metabolism, an influx of Ca2+ ions into the cell and fusions of the perigranular and the cytoplasmic membranes are observed. The physiologic role of the mast cell and its mediators is still a mystery.

Animals↗

n-Butyrate inhibits Jun NH(2)-terminal kinase activation and cytokine transcription in mast cells.

Mast cells are well known to contribute to type I allergic conditions but only recently have been brought in association with chronic relapsing/remitting autoimmune diseases such as celiac disease and ulcerative colitis. Since the bacterial metabolite n-butyrate is considered to counteract intestinal inflammation we investigated the effects of this short chain fatty acid on mast cell activation. Using RNAse protection assays and reporter gene technology we show that n-butyrate downregulates TNF-alpha transcription. This correlates with an impaired activation of the Jun NH(2)-terminal kinase (JNK) but not other MAP kinases such as ERK and p38 that are largely unaffected by n-butyrate. As a consequence, we observed a decreased nuclear activity of AP-1 and NF-AT transcription factors. These results indicate that n-butyrate inhibits critical inflammatory mediators in mast cells by relatively selectively targeting the JNK signalling.

Animals↗

Human mast cell proteases and mast cell heterogeneity.

Mast cell neutral proteases are distinctive markers of the MC(T) and MC(TC) cells in humans. Measurements of tryptase levels in vivo serve as an overall indicator of mast cell activity. Further research is needed to evaluate the functional role of these proteases as well as each mast cell type in situations related to both health and disease.

Biomarkers↗

Mast cells and canine mast cell tumours. A review.

This article reviews the literature on mast cells and tumours derived from mast cells in the dog. Mast cells play a central role in inflammatory and immune reactions. Mast cells, normal and neoplastic, contain and release important biologically active substances: heparin, histamine, eosinophilic chemotactic factor and proteolytic enzymes. Mast cell tumours occur in the dog, particularly in the boxer and related breeds, in the skin and less frequently in the intestines. Cytology usually provides an accurate diagnosis, but histological examination adds further information concerning the histologic grade and the completeness of surgical therapy. Cutaneous mast cell tumours should be regarded as potentially malignant and therefore be removed widely (3 cm. margin). Local recurrence, regional and distant metastases together with paraneoplastic disorders may cause the death of the pet. Histologic grading (2 or 3 grades) and clinical staging together with kinetic parameters and breed (boxers have relatively benign tumours) are important prognostic parameters. Based on prognostic criteria, surgical treatment should be completed with adjuvant radiotherapy, corticosteroids and eventually with combined chemotherapy. A novel, promising therapy is the application of the receptor kinase inhibitor. The study of the pathogenesis of mast cell tumours received new impetus by the finding of mutations, deletions and duplications, in exons 11 and 12 of the C-kit oncogene. Further study of physiological and oncological aspects of mast cells are favoured by the availability of mast cells isolated from spontaneous mast cell tumours and of cultured cell lines.

Animals↗

Cloning of the cDNA and gene of mouse mast cell protease-6. Transcription by progenitor mast cells and mast cells of the connective tissue subclass.

The cDNA and gene for mouse mast cell protease-6 (MMCP-6) have been sequenced and show MMCP-6 to be translated as a prepro-enzyme with a 21-amino acid hydrophobic leader peptide, a 10-amino acid activation peptide, and a 245-amino acid mature enzyme. The mature form of the enzyme has 73% amino acid sequence identity with human and dog mast cell tryptases. The MMCP-6 gene includes 6 exons, with a total span of 1.8 kilobases. A 208-base pair intron was defined which separates the 5'-untranslated sequence of MMCP-6 from the translation initiation codon, thereby presenting a gene organization which distinguishes tryptic serine proteases from chymotryptic serine proteases of the mast cell secretory granule. By RNA blot analysis with a gene-specific probe, MMCP-6 has a unique subclass distribution in being transcribed in mouse connective tissue mast cells but undetectable in mucosal mast cells. MMCP-6 is the first serine protease of any class to be shown to be significantly transcribed in progenitor, bone marrow-derived mast cells, which can reconstitute both mucosal mast cell and connective tissue mast cell populations in mast cell-deficient mice.

Amino Acid Sequence↗

c-kit Gene was not transcribed in cultured mast cells of mast cell-deficient Wsh/Wsh mice that have a normal number of erythrocytes and a normal c-kit coding region.

The Wsh is a mutant allele at the W (c-kit) locus of mice. Mice of Wsh/Wsh genotype have white hairs and black eyes. Although adult C57BL/6-Wsh/Wsh mice were not anemic, they showed a remarkable depletion of mast cells. Most homozygous or double heterozygous mutant mice at the W (c-kit) locus, of which mast-cell depletion was comparable to that of Wsh/Wsh mice, are deficient in germ cells. However, male and female Wsh/Wsh mice have an appreciable number of germ cells in their gonads. We investigated the mechanism of specific depletion of mast cells in Wsh/Wsh mice. Cultured mast cells (CMC) derived from the spleen of Wsh/Wsh mice neither attached to normal (+/+) fibroblasts nor survived in the coculture with +/+ fibroblasts. The c-kit messenger RNA (mRNA) was strongly expressed in +/+ CMC, but not detectable in Wsh/Wsh CMC. Despite the lack of c-kit mRNA in Wsh/Wsh CMC, the c-kit mRNA was normally detectable in the cerebellum and weakly detectable in the testis and spleen of Wsh/Wsh mice. No significant changes were found in the nucleotide sequence of the c-kit transcripts obtained from the cerebellum of Wsh/Wsh mice. Development of mast cells, erythrocytes, and germ cells in Wsh/Wsh mice appeared to be parallel with the magnitude of the c-kit gene expression in each cell type.

Anemia↗

Identification of IgE-positive cells and mast cells in frozen sections of multiple sclerosis brains.

There is evidence that nervous system mast cells may be involved in the pathogenesis of experimental demyelinating diseases, and that their involvement may be mediated by IgE. In order to examine the possible relevance of these observations to human demyelinating diseases, we have histologically and immunocytochemically examined multiple sclerosis (MS) and control brains for the presence of mast cells and IgE. Using a highly specific antiserum, we found IgE-positive cells in MS brains, but not in controls. IgE-positive cells could be detected in all regions of MS lesions, but were far more frequent in areas of active infiltration. Immunopositive staining was only observed when sections were pretreated with a methanolic peroxide solution, suggesting that the IgE was cytoplasmic. Positive cells typically exhibited plasma cell morphology. Mast cells were identified using chloroacetate esterase (CAE) staining, and we were able to confirm previous reports of an increased association of mast cells with MS lesions. Mast cells were seen in 7/14 MS brains compared with 1/8 controls. They were most commonly observed in demyelinated areas, but were also seen in association with infiltrate. Mast cells and IgE-positive cells were also observed in areas of perivascular infiltration in other inflammatory central nervous system diseases (subacute sclerosing panencephalitis, herpes encephalitis). Mast cells may represent a route for infiltrating cells to enter the brain in inflammatory disorders.

Brain↗

Correlation between T-cell and mast cell activity in patients with chronic urticaria.

BACKGROUND: The presence of autoantibodies reacting with the high affinity IgE receptor (FcepsilonRIalpha) usually indicates a more severe form of chronic urticaria (CU). Previously, we showed an increased lymphocyte reactivity in CU patients; however, the relation between enhanced cellular immunity and the presence of anti-FcepsilonRIalpha-specific autoantibodies has not been investigated. METHODS: Cellular and humoral immune reactivity of 50 CU patients and 28 healthy controls was studied. Serum sIL-2R, neopterin, and tryptase levels were measured to assess T-cell, monocyte/macrophage and mast cell activity, respectively. Helicobacter pylori (HP)-specific IgG antibody, and IgE levels were also tested. Anti-FcepsilonRIalpha-specific autoantibody was determined by Western blotting. In vivo histamine-releasing activity of patients' sera was assessed by the autologous serum skin test (AST). RESULTS: 17/50 CU patients, who both had IgG-type anti-FcepsilonRIalpha-antibodies by Western blotting and a positive AST response, were classified as autoimmune CU. All patients with CU had significantly higher serum sIL-2R and tryptase levels than healthy controls (p = 0.000257, p = 0.000166, respectively), indicating T-cell and mast cell activation. Patients with higher sIL-2R levels also had higher tryptase levels; the strongest correlation was shown in the autoimmune subgroup of patients (rho = 0.688, p = 0.002). There was a tendency towards higher tryptase levels in the autoimmune subgroup, as compared to the nonautoimmune CU patients. While the serum IgE was significantly lower in autoimmune than in nonautoimmune CU (p = 0.000836), there was no significant difference in their sIL-2R, neopterin and HP-specific IgG antibody levels. CU patients with a positive AST response (38/50) had significantly higher tryptase levels (p = 0.0107) when compared to the negative skin test group. CONCLUSIONS: The significant correlation between sIL-2R and tryptase levels in patients with CU indicates that T cell activation is proportional to mast cell degranulation in these patients. The increased level of tryptase in autoimmune CU may suggest more severe disease.

Adolescent↗

Tyrosine phosphorylation of the linker for activator of T cells in mast cells by stimulation with the high affinity IgE receptor.

Aggregation of the high affinity IgE receptors (FcepsilonRI) on basophils and mast cells, members of the immune receptor family, initiates a cascade of events that results in the release of inflammatory mediators. This pathway involves the activation of several protein-tyrosine kinases, including Lyn, Syk, Btk, and Fak that induce the tyrosine phosphorylation of various proteins. The linker for activation of T cells (LAT), was originally found as a ZAP-70 tyrosine kinase substrate that linked T cell receptors to cellular activation, and was expressed in T cells, NK cells and mast cells. Here we show that LAT expressed in the RBL-2H3 rat mast cell line is tyrosine-phosphorylated after aggregation of FcepsilonRI. The tyrosine phosphorylation of the LAT was dramatically enhanced after receptor aggregation. Furthermore, a tyrosine-phosphorylated 80-kDa protein associated with LAT transiently after receptor aggregation. GST fusion proteins containing parts of PLCgamma or PI3 kinase can bind LAT. These results suggest that LAT plays an important role not only in T cell, but also in mast cell activation, and that the association among these signaling molecules is critical for FcepsilonRI-mediated intracellular signal transduction in mast cells.

Animals↗

The inhibitory receptor IRp60 (CD300a) is expressed and functional on human mast cells.

Mast cell-mediated responses are likely to be regulated by the cross talk between activatory and inhibitory signals. We have screened human cord blood mast cells for recently characterized inhibitory receptors expressed on NK cells. We found that IRp60, an Ig superfamily member, is expressed on human mast cells. On NK cells, IRp60 cross-linking leads to the inhibition of cytotoxic activity vs target cells in vitro. IRp60 is constitutively expressed on mast cells but is down-regulated in vitro by the eosinophil proteins major basic protein and eosinophil-derived neurotoxin. An immune complex-mediated cross-linking of IRp60 led to inhibition of IgE-induced degranulation and stem cell factor-mediated survival via a mechanism involving tyrosine phosphorylation, phosphatase recruitment, and termination of cellular calcium influx. To evaluate the role of IRp60 in regulation of allergic responses in vivo, a murine model of allergic peritonitis was used in which the murine homolog of IRp60, LMIR1, was neutralized in BALB/c mice by mAbs. This neutralization led to a significantly augmented release of inflammatory mediators and eosinophilic infiltration. These data demonstrate a novel pathway for the regulation of human mast cell function and allergic responses, indicating IRp60 as a candidate target for future treatment of allergic and mast cell-associated diseases.

Animals↗

Surface and gene expression of immunoglobulin E receptors on mast cells and mast-cell numbers in interleukin-4-gene knockout mice.

We quantified immunoglobulin E (IgE) on peritoneal mast cells of interleukin-4 (IL-4)-gene knockout (-/-) mice and wild-type (+/+) controls using a cytofluorometric method, and examined the expression of IgE receptors, estimated by quantifying the total binding of IgE on the mast cells of IL-4 (-/-) mice. The mast cells of IL-4 (+/+) mice, identified and measured using microscope fluorometry, had a fluorescence intensity five to six times higher than that of non-mast cells, while the mast cells obtained from IL-4 (-/-) mice had fluorescence intensities within the range of those of non-mast cells. Two weeks after an infection with Nippostrongylus brasiliensis, the fluorescence intensity of the mast cells of IL-4 (+/+) mice increased to a level about twice as high as that before immunization. However, no significant increase after infection was observed in IL-4 (-/-) mice. Furthermore, the mast cells of IL-4 (-/-) mice did not bind IgE when incubated with IgE at concentrations that saturated IgE receptors on the mast cells of wild-type controls, thereby indicating that the expression of IgE receptors on mast cells was impaired in the IL-4-deficient mice. Using a reverse transcription-polymerase chain reaction, we found gene expression of all three subunits (alpha-, beta- and gamma-chains) of the IgE receptor in IL-4 (-/-) like that in IL-4 (+/+) mice. The results thus suggest that the binding of IgE may be essential to induce the translation of mRNA to IgE-receptor proteins. We also observed that there were about twice as many peritoneal mast cells in the IL-4 (-/-) mice as there were in the IL-4 (+/+) mice, in both immunized and non-immunized animals. This was unexpected in view of previous findings suggesting that IL-4, in concert with stem cell factor and IL-3, stimulates the proliferation and differentiation of mast cells in vitro.

Animals↗

Capacitance measurements reveal stepwise fusion events in degranulating mast cells.

Mast cells undergo an extensive and violent morphological transformation on stimulation. Here we describe the dynamics of fusion of the secretory granules in individual mast cells during exocytosis. The cell membrane capacitance (proportional to the cell surface area) was measured using the whole-cell patch-pipette technique, in which the intracellular space is dialysed with the solutions used to fill the patch pipette. Our results show that degranulation occurs spontaneously and reproducibly if the GTP analogue, GTP-gamma-S, and Mg-ATP are present in the pipette filling solution. Contrary to previous reports, in these conditions Ca2+ (and/or Ca2+ buffers) is not required for degranulation. Although electrogenic Ca2+ entry was not detected before or during degranulation and membrane conductance remained low, the capacitance, and by implication the area of the membrane of degranulating cells, increased sigmoidally and stepwise. We conclude that stepwise increases of capacitance are due to the fusion of individual secretory granules with the plasma membrane, and that guanine nucleotide regulatory proteins are involved in the control of this process.

Animals↗

Tumor necrosis factor-alpha-converting enzyme controls surface expression of c-Kit and survival of embryonic stem cell-derived mast cells.

Transmembrane metalloproteinases of the disintegrin and metalloproteinase (ADAM) family control cell signaling interactions via hydrolysis of protein extracellular domains. Prior work has shown that the receptor tyrosine kinase, c-Kit (CD117), is essential for mast cell survival and that serum levels of c-Kit increase in proliferative mast cell disorders, suggesting the existence of c-Kit shedding pathways in mast cells. In the present work, we report that tumor necrosis factor alpha-converting enzyme (TACE; ADAM-17) mediates shedding of c-Kit. Stimulation of transfected cells with phorbol 12-myristate 13-acetate (PMA) induced metalloproteinase-mediated release of c-Kit ectodomain, which increased further upon TACE overexpression. By contrast, TACE-deficient fibroblasts did not demonstrate inducible release, thus identifying TACE as the metalloproteinase primarily responsible for PMA-induced c-Kit shedding. Surface expression of c-Kit by the human mast cell-1 line decreased upon phorbol-induced shedding, which involved metalloproteinase activity susceptible to inhibition by tissue inhibitor of metalloproteinase (TIMP)-3. To further explore the role of TACE in shedding of c-Kit from mast cells, we compared the behavior of mast cells derived from murine embryonic stem cells. In these studies, PMA decreased surface c-Kit levels on mast cells expressing wild-type (+/+) TACE but not on those expressing an inactive mutant (DeltaZn/DeltaZn), confirming the role of TACE in PMA-induced c-Kit shedding. Compared with TACE(+/+) cells, TACE(DeltaZn/DeltaZn) mast cells also demonstrated decreased constitutive shedding and increased basal surface expression of c-Kit, with diminished apoptosis in response to c-Kit ligand deprivation. These data suggest that TACE controls mast cell survival by regulating shedding and surface expression of c-Kit.

ADAM Proteins↗