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Identification of FcalphaRI as an inhibitory receptor that controls inflammation: dual role of FcRgamma ITAM.

机译:鉴定FcalphaRI作为控制炎症的抑制受体:FcRgamma ITAM的双重作用。

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Serum IgA is considered a discrete housekeeper of the immune system with multiple anti-inflammatory functions, whereas IgA-immune complexes mediate inflammatory responses. Here, we identify FcalphaRI as a molecular device that determines the nature of IgA responses. In the absence of sustained aggregation, receptor targeting by serum IgA or anti-FcalphaRI Fab inhibits activating responses of heterologous FcgammaR or FcepsilonRI. The inhibitory mechanism involves recruitment of tyrosine phosphatase SHP-1 to FcalphaRI and impairment of Syk, LAT, and ERK phosphorylation induced by FcepsilonRI engagement. SHP-1 recruitment is dependent on ERK. Conversely, sustained aggregation of FcalphaRI by multimeric ligands stimulates cell activation by recruiting high amounts of Syk and aborting SHP-1 binding. Both types of signals require the FcRgamma-ITAM motif. Anti-FcalphaRI Fab treatment suppresses manifestations of allergic asthma in FcalphaRI transgenic mice. These findings redefine FcalphaRI as a bifunctional inhibitory/activating receptor of the immune system that mediates both anti- and proinflammatory functions of IgA.
机译:血清IgA被认为是免疫系统的离散管家,具有多种抗炎功能,而IgA免疫复合物可介导炎症反应。在这里,我们确定Fc​​alphaRI为分子设备,确定IgA反应的性质。在没有持续聚集的情况下,血清IgA或抗FcalphaRI Fab靶向受体会抑制异源FcgammaR或FcepsilonRI的激活反应。抑制机制涉及酪氨酸磷酸酶SHP-1募集到FcalphaRI和FcepsilonRI参与诱导的Syk,LAT和ERK磷酸化受损。 SHP-1的招聘取决于ERK。相反,多聚体配体持续聚集FcalphaRI,通过募集大量Syk并中止SHP-1结合来刺激细胞活化。两种信号都需要FcRgamma-ITAM基序。抗FcalphaRI Fab处理可抑制FcalphaRI转基因小鼠的过敏性哮喘表现。这些发现将FcalphaRI重新定义为介导IgA的抗炎和促炎功能的免疫系统的双功能抑制/激活受体。

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