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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >The {beta} Subunit of the Type I Fc{epsilon} Receptor Is a Target for Peptides Inhibiting IgE-Mediated Secretory Response of Mast Cells.
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The {beta} Subunit of the Type I Fc{epsilon} Receptor Is a Target for Peptides Inhibiting IgE-Mediated Secretory Response of Mast Cells.

机译:I型Fcε受体的β亚基是抑制肥大细胞IgE介导的分泌反应的肽的靶标。

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摘要

Peptides originally derived from complement component C3a were earlier shown to inhibit the type I FcepsilonR (FcepsilonRI)-mediated degranulation of mucosal type mast cells. In the present study, we show that C3a7, a peptide with a natural sequence, and its modified derivative, C3a9, are powerful inhibitors of the above response of both serosal and mucosal type mastocytes. We demonstrate that these peptides inhibit FcepsilonRI-induced membrane proximal events, suppress phosphorylation of the FcepsilonRI beta subunit, the protein tyrosine kinase Lyn, as well as the transient rise in free cytosolic Ca(2+) level. The late phase of cellular response was also inhibited, as demonstrated by the reduced TNF-alpha secretion. Experiments using two independent methods provided evidence that the interaction site of complement-derived peptides is the FcepsilonRI beta-chain. This was further supported by fluorescence confocal microscopic colocalization and resonance energy transfer measurements. Taken together, these results suggest the presence of distinct "activating" and "inhibitory" motifs in the C3a sequence. Response to both is in balance under physiologic conditions. Furthermore, present data predict that such inhibitory peptides may serve as potent agents for future therapeutic intervention.
机译:最初显示出源自补体成分C3a的肽可抑制I型FcepsilonR(FcepsilonRI)介导的粘膜型肥大细胞脱粒。在本研究中,我们显示具有天然序列的肽C3a7及其修饰的衍生物C3a9是浆膜和粘膜型肥大细胞上述反应的有力抑制剂。我们证明这些肽抑制FcepsilonRI诱导的膜近端事件,抑制FcepsilonRIβ亚基,蛋白酪氨酸激酶Lyn的磷酸化,以及游离胞质Ca(2+)水平的短暂上升。如减少的TNF-α分泌所证明,细胞反应的后期也受到抑制。使用两种独立方法进行的实验提供了证据,证明补体衍生肽的相互作用位点是FcepsilonRIβ-链。荧光共聚焦显微镜共定位和共振能量转移测量进一步支持了这一点。总而言之,这些结果表明C3a序列中存在明显的“激活”和“抑制”基序。在生理条件下,对两者的反应均处于平衡状态。此外,目前的数据预测,这种抑制性肽可以用作未来治疗干预的有效剂。

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