| Literature DB >> 12119347 |
Satoshi Tanaka1, Yuhji Takasu, Sonoko Mikura, Norio Satoh, Atsushi Ichikawa.
Abstract
Immunoglobulin (Ig)E-mediated activation of mast cells has long been thought to occur only when Fc(epsilon)RI receptor-bound IgE is cross-linked via multivalent antigens. However, recent studies have raised the possibility that mast cells may be activated by the binding of IgE to the Fc(epsilon)RI receptor in the absence of antigen. Here we demonstrate that IgE binding without antigen induces the expression of histidine decarboxylase (HDC) in mouse interleukin (IL)-3-dependent bone marrow-derived mast cells (BMMCs). The induction of HDC by the binding of IgE was found to require an influx of extracellular calcium ions, which was attenuated by pretreatment with U73122, a phospholipase C inhibitor. Furthermore, the increase in HDC activity upon sensitization with IgE was completely suppressed by pretreatment of BMMCs with protein kinase C inhibitors, such as H7, staurosporine, and Gö6976. In addition, immediate activation of the tyrosine kinase Lyn was not detectable upon treatment with IgE. These results suggest that the binding of IgE to its receptor in the absence of antigen results in de novo synthesis of HDC in BMMCs through a signaling pathway distinct to that operating during antigen-stimulated Fc(epsilon)RI activation.Entities:
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Year: 2002 PMID: 12119347 PMCID: PMC2193927 DOI: 10.1084/jem.20012037
Source DB: PubMed Journal: J Exp Med ISSN: 0022-1007 Impact factor: 14.307
Increase in HDC Activity Induced by IgE or Various Activators of the Ca2+–PKC Pathway
| HDC activity | |
|---|---|
| pmol/min/mg protein | |
| None | 3.13 ± 1.68 |
| Anti-DNP IgE | 652 ± 54.8 |
| Anti-DNP IgG | 5.80 ± 1.95 |
| Polyclonal IgG | 1.43 ± 1.00 |
| Anti-DNP IgE + 2.4G2 | 626 ± 46.2 |
| IgE/antigen | 389 ± 10.3 |
| Thapsigargin | 618 ± 162 |
| TPA | 96.3 ± 23.3 |
| A23187 | 1,240 ± 118 |
BMMCs were cultured in the presence of an anti-DNP IgE (3 μg/ml), an anti-DNP IgG (3 μg/ml), purified polyclonal IgG (3 μg/ml), thapsigargin (100 nM), TPA (10 nM), and A23187 (0.3 μM) for 6 h at 37°C. Blocking of FcγRII and FcγRIII was performed by pretreatment with the 2.4G2 antibody (10 μg/ml) for 10 min. In the experiment of antigen stimulation (IgE/antigen), BMMCs were incubated in the presence of 1 μg/ml anti-DNP IgE for 24 h at 37°C, washed, and then incubated with 30 ng/ml DNP-human serum albumin for 6 h. The concentration of each reagent was optimized in preliminary experiments to obtain its maximal effect. The values obtained are represented as the means ± SEM (n = 3).
P < 0.01 is regarded as significant by the Student's t test (vs. None).
P < 0.05 is regarded as significant by the Student's t test (vs. Anti-DNP IgE).
Figure 1.Time course of HDC activity and mRNA accumulation induced by IgE. BMMCs were cultured in the presence of 3 μg/ml anti-DNP IgE for the periods indicated. (A) HDC activity (closed boxes) and histamine content (open boxes) of the cells are demonstrated. The values are represented as the means ± SEM (n = 3). (B) Transient increase in HDC mRNA accumulation is represented. The relative intensities of the bands hybridized with the probe for HDC were normalized by those with the probe for glyceraldehyde-3-phosphate dehydrogenase (GAPDH). This is a representative figure of three independent experiments showing similar results. (C) The result of immunoblot analyses using an anti-HDC antibody is demonstrated. The arrows indicate the position of the 74-kD form (74-kD) and 53-kD form (53-kD) of HDC. Note that the 53-kD form is undetectable.
Figure 2.Requirement of extracellular Ca2+ for the induction of HDC by IgE. (A) BMMCs were incubated in PIPES buffer with (Ca2+) or without Ca2+ (Ca2+-free) for 90 min in the presence (black bars) or absence (white bars) of 3 μg/ml anti-DNP IgE. The cells were then harvested and Northern blot analyses were performed. The relative intensities of the hybridized bands are demonstrated as described in the legend to Fig. 1. This is a representative figure of three independent experiments showing similar results. (B and C) Ca2+ influx induced by anti-DNP IgE was compared with that induced by antigen stimulation. BMMCs were loaded with 2 μM Fura-2/AM in modified Tyrode's buffer in the presence (B) or absence (C) of Ca2+ as described in Materials and Methods. U73122 or U73343 (3 μM) was added (U) 3 min (C) or 7 min (B) before the stimulation. (Left panels) Stimulation with anti-DNP IgE (10 μg/ml) added to the culture. (Right panels) Stimulation with antigen (Ag, DNP-human serum albumin, 30 ng/ml) after 12 h of sensitization with anti-DNP IgE (1 μg/ml).
Figure 3.Effects of various kinase inhibitors on the induction of HDC by IgE. BMMCs were pretreated with various kinase inhibitors as described in Materials and Methods. The cells were further incubated in the presence or absence of 3 μg/ml anti-DNP IgE for 3 h (for Northern blot) or 6 h (for HDC activity). (Top panels) HDC activity of the cells is presented. The values are represented as the means ± SEM (n = 3). (Bottom panels) HDC mRNA accumulation in the cells were measured by Northern blot analyses. The relative intensities of the hybridized bands are demonstrated as described in the legend to Fig. 1. This is a representative figure of three independent experiments showing similar results.
Figure 4.Absence of enzymatic activation of Lyn upon treatment with IgE. Enzymatic activation of Lyn following IgE sensitization was measured. BMMCs were incubated with anti-DNP IgE (IgE, 3 μg/ml) for 5 min. In the experiment of antigen stimulation, cells were sensitized with anti-DNP IgE (1 μg/ml) for 12 h and then incubated with DNP-human serum albumin (0, 30, 100, 300 ng/ml) for 5 min. In vitro kinase assay using [γ-32P]ATP was performed as described in Materials and Methods. Immunoblot analyses were also performed using an anti-Lyn antibody (1:200) to confirm an equal amount of precipitated Lyn. The arrows indicate Lyn tyrosine kinase, which is detected as two bands with molecular mass of 53 and 56 kD.