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首页> 外文期刊>The Journal of Experomental Medicine >A Regulatory Role for Src Homology 2 Domain–Containing Inositol 5′-Phosphatase (Ship) in Phagocytosis Mediated by Fcγ Receptors and Complement Receptor 3 (αMβ2; Cd11b/Cd18)
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A Regulatory Role for Src Homology 2 Domain–Containing Inositol 5′-Phosphatase (Ship) in Phagocytosis Mediated by Fcγ Receptors and Complement Receptor 3 (αMβ2; Cd11b/Cd18)

机译:Fcγ受体和补体受体3(αMβ2; Cd11b / Cd18)介导的吞噬作用中,Src同源2域的肌醇5'-磷酸酶(Ship)的调节作用。

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The Src homology 2 domain–containing inositol 5′-phosphatase (SHIP) is recruited to immunoreceptor tyrosine-based inhibition motif (ITIM)–containing proteins, thereby suppressing phosphatidylinositol 3-kinase (PI 3-kinase)–dependent pathways. The role of SHIP in phagocytosis, a PI 3-kinase–dependent pathway, is unknown. Overexpression of SHIP in macrophages led to an inhibition of phagocytosis mediated by receptors for the Fc portion of IgG (FcγRs). In contrast, macrophages expressing catalytically inactive SHIP or lacking SHIP expression demonstrated enhanced phagocytosis. To determine whether SHIP regulates phagocytosis mediated by receptors that are not known to recruit ITIMs, we determined the effect of SHIP expression on complement receptor 3 (CR3; CD11b/CD18; αMβ2)–dependent phagocytosis. Macrophages overexpressing SHIP demonstrated impaired CR3-mediated phagocytosis, whereas macrophages expressing catalytically inactive SHIP demonstrated enhanced phagocytosis. CR3-mediated phagocytosis in macrophages derived from SHIP?/? mice was up to 2.5 times as efficient as that observed in macrophages derived from littermate controls. SHIP was localized to FcγR- and CR3-containing phagocytic cups and was recruited to the cytoskeleton upon clustering of CR3. In a transfected COS cell model of activation-independent CR3-mediated phagocytosis, catalytically active but not inactive SHIP also inhibited phagocytosis. We conclude that PI 3-kinase(s) and SHIP regulate multiple forms of phagocytosis and that endogenous SHIP plays a role in modulating β2 integrin outside-in signaling.
机译:包含Src同源2域的肌醇5'-磷酸酶(SHIP)被募集到基于免疫受体酪氨酸的抑制基序(ITIM)的蛋白,从而抑制磷脂酰肌醇3-激酶(PI 3-激酶)依赖性途径。 SHIP在吞噬作用(PI 3激酶依赖性途径)中的作用尚不清楚。 SHIP在巨噬细胞中的过表达导致对吞噬作用的抑制,该吞噬作用是由IgG Fc部分的受体(FcγRs)介导的。相反,表达催化失活的SHIP或缺乏SHIP表达的巨噬细胞表现出增强的吞噬作用。为了确定SHIP是否调节由未知招募ITIM的受体介导的吞噬作用,我们确定了SHIP表达对补体受体3(CR3; CD11b / CD18;αMβ2)依赖性吞噬作用的影响。过度表达SHIP的巨噬细胞表明CR3介导的吞噬功能受损,而表达催化失活的SHIP的巨噬细胞表现出增强的吞噬能力。 CR3介导的SHIPα/β巨噬细胞吞噬作用。小鼠的效率是源自同窝仔对照的巨噬细胞的2.5倍。 SHIP定位在含有FcγR和CR3的吞噬杯中,并在CR3聚集后募集到细胞骨架中。在不依赖激活的CR3介导的吞噬作用的转染COS细胞模型中,催化活性而不是非活性的SHIP也抑制了吞噬作用。我们得出结论,PI 3-激酶和SHIP调节吞噬作用的多种形式,内源性SHIP在调节β2整联蛋白外-内信号传导中发挥作用。

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