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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Dynamic interactions of Fc{gamma} receptor IIB with filamin-bound SHIP1 amplify filamentous actin-dependent negative regulation of Fc{epsilon} receptor I signaling.
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Dynamic interactions of Fc{gamma} receptor IIB with filamin-bound SHIP1 amplify filamentous actin-dependent negative regulation of Fc{epsilon} receptor I signaling.

机译:Fc {γ}受体IIB与纤维蛋白结合的SHIP1的动态相互作用会放大Fcε受体I信号转导的丝状肌动蛋白依赖性负调控。

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摘要

The engagement of high affinity receptors for IgE (FcepsilonRI) generates both positive and negative signals whose integration determines the intensity of mast cell responses. FcepsilonRI-positive signals are also negatively regulated by low affinity receptors for IgG (FcgammaRIIB). Although the constitutive negative regulation of FcepsilonRI signaling was shown to depend on the submembranous F-actin skeleton, the role of this compartment in FcgammaRIIB-dependent inhibition is unknown. We show in this study that the F-actin skeleton is essential for FcgammaRIIB-dependent negative regulation. It contains SHIP1, the phosphatase responsible for inhibition, which is constitutively associated with the actin-binding protein, filamin-1. After coaggregation, FcgammaRIIB and FcepsilonRI rapidly interact with the F-actin skeleton and engage SHIP1 and filamin-1. Later, filamin-1 and F-actin dissociate from FcR complexes, whereas SHIP1 remains associated with FcgammaRIIB. Based on these results, we propose a dynamic model in which the submembranous F-actin skeleton forms an inhibitory compartment where filamin-1 functions as a donor of SHIP1 for FcgammaRIIB, which concentrate this phosphatase in the vicinity of FcepsilonRI and thereby extinguish activation signals.
机译:高亲和力的IgE受体(FcepsilonRI)的参与会产生阳性和阴性信号,它们的整合决定了肥大细胞反应的强度。 FcepsilonRI阳性信号也受到IgG(FcgammaRIIB)的低亲和力受体的负调控。尽管显示FcepsilonRI信号的组成型负调控取决于膜下F-肌动蛋白骨架,但该区室在FcgRIRIIB依赖性抑制中的作用尚不清楚。我们在这项研究中表明,F-肌动蛋白骨架对于FcgammaRIIB依赖性负调控至关重要。它含有SHIP1,负责抑制的磷酸酶,与肌动蛋白结合蛋白filamin-1组成性结合。共聚后,FcgammaRIIB和FcepsilonRI迅速与F-肌动蛋白骨架相互作用,并与SHIP1和filamin-1结合。后来,filamin-1和F-肌动蛋白从FcR复合物中解离,而SHIP1仍然与FcgammaRIIB相关。基于这些结果,我们提出了一个动态模型,其中膜下F-肌动蛋白骨架形成抑制室,其中filamin-1充当FcgammaRIIB的SHIP1的供体,使该磷酸酶集中在FcepsilonRI附近,从而消除了激活信号。

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