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IgG 非依赖性 FcεRI 和 FcγRIIB 的共聚集导致鼠骨髓来源肥大细胞中 FcγRIIB 的 LYN 和 SHIP1 依赖性酪氨酸磷酸化。

IgG-Independent Co-aggregation of FcεRI and FcγRIIB Results in LYN- and SHIP1-Dependent Tyrosine Phosphorylation of FcγRIIB in Murine Bone Marrow-Derived Mast Cells.

机构信息

Medical Faculty, Institute of Biochemistry and Molecular Immunology, RWTH Aachen University, Aachen, Germany.

Proteomics Facility, IZKF, RWTH Aachen University, Aachen, Germany.

出版信息

Front Immunol. 2018 Aug 27;9:1937. doi: 10.3389/fimmu.2018.01937. eCollection 2018.

Abstract

Activation of the high-affinity receptor for IgE (FcεRI) follows a bell-shaped dose-response curve. Upon supra-optimal stimulation, mast cell effector responses are down-regulated by inhibitory molecules like the SH2-containing inositol-5'-phosphatase SHIP1 and the SRC-family-kinase LYN. To identify further molecules involved in a negative regulatory signalosome, we screened for proteins showing the same pattern of tyrosine phosphorylation as SHIP1, which is tyrosine-phosphorylated strongest upon supra-optimal antigen (Ag) stimulation. The low-affinity IgG receptor, FcγRIIB, was found to be most strongly phosphorylated under supra-optimal conditions. This phosphorylation is the consequence of passive, Ag/IgE-dependent and progressive co-localization of FcεRI and FcγRIIB, which is not dependent on IgG. Upon supra-optimal FcεRI cross-linking, FcγRIIB phosphorylation is executed by LYN and protected from dephosphorylation by SHIP1. Analysis of FcγRIIB-deficient bone marrow-derived mast cells revealed an ambiguous phenotype upon FcεRI cross-linking. Absence of FcγRIIB significantly diminished the level of SHIP1 phosphorylation and resulted in augmented Ca mobilization. Though, degranulation and IL-6 production were only weakly altered. Altogether our data establish the LYN/FcγRIIB/SHIP1 signalosome in the context of FcεRI activation, particularly at supra-optimal Ag concentrations. The fact that SHIP1 tyrosine phosphorylation/activation not only depends on FcγRIIB, highlights the necessity for its tight backup control.

摘要

高亲和力 IgE 受体 (FcεRI) 的激活遵循钟形剂量反应曲线。在超最佳刺激下,抑制分子如含有 SH2 的肌醇 5'-磷酸酶 SHIP1 和 SRC 家族激酶 LYN 下调肥大细胞效应器反应。为了鉴定参与负调节信号体的其他分子,我们筛选出与 SHIP1 表现出相同酪氨酸磷酸化模式的蛋白质,SHIP1 在超最佳抗原 (Ag) 刺激下最强地被酪氨酸磷酸化。低亲和力 IgG 受体 FcγRIIB 在超最佳条件下被发现被最强地磷酸化。这种磷酸化是 FcεRI 和 FcγRIIB 被动、Ag/IgE 依赖性和渐进性共定位的结果,而不依赖于 IgG。在超最佳 FcεRI 交联下,FcγRIIB 磷酸化由 LYN 执行,并受到 SHIP1 的保护而不被去磷酸化。对 FcγRIIB 缺陷骨髓来源的肥大细胞的分析表明,在 FcεRI 交联下表现出模糊的表型。缺乏 FcγRIIB 显著降低了 SHIP1 磷酸化水平,并导致 Ca 动员增加。然而,脱颗粒和 IL-6 产生仅被微弱改变。总之,我们的数据在 FcεRI 激活的背景下建立了 LYN/FcγRIIB/SHIP1 信号体,特别是在超最佳 Ag 浓度下。SHIP1 酪氨酸磷酸化/激活不仅取决于 FcγRIIB 的事实突出了其紧密备份控制的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/962f/6119721/4cbb83bb8eda/fimmu-09-01937-g0001.jpg

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