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Rab31和APPL2通过巨噬细胞中的PI3K/Akt信号传导增强FcγR介导的吞噬作用。

Rab31 and APPL2 enhance FcγR-mediated phagocytosis through PI3K/Akt signaling in macrophages.

作者信息

Yeo Jeremy C, Wall Adam A, Luo Lin, Stow Jennifer L

机构信息

Institute for Molecular Bioscience, University of Queensland, Brisbane QLD 4072, Australia.

Institute for Molecular Bioscience, University of Queensland, Brisbane QLD 4072, Australia

出版信息

Mol Biol Cell. 2015 Mar 1;26(5):952-65. doi: 10.1091/mbc.E14-10-1457. Epub 2015 Jan 7.

Abstract

Membrane remodeling in the early stages of phagocytosis enables the engulfment of particles or pathogens and receptor signaling to activate innate immune responses. Members of the Rab GTPase family and their disparate effectors are recruited sequentially to regulate steps throughout phagocytosis. Rab31 (Rab22b) is known for regulating post-Golgi trafficking, and here we show in macrophages that Rab31-GTP is additionally and specifically recruited to early-stage phagosomes. At phagocytic cups, Rab31 is first recruited during the phosphoinositide transition from PI(4,5)P2 to PI(3,4,5)P3, and it persists on PI(3)P-enriched phagosomes. During early phagocytosis, we find that Rab31 recruits the signaling adaptor APPL2. siRNA depletion of either Rab31 or APPL2 reduces FcγR-mediated phagocytosis. Mechanistically, this corresponds with a delay in the transition to PI(3,4,5)P3 and phagocytic cup closure. APPL2 depletion also reduced PI3K/Akt signaling and enhanced p38 signaling from FcγR. We thus conclude that Rab31/APPL2 is required for key roles in phagocytosis and prosurvival responses of macrophages. Of interest, in terms of localization and function, this Rab31/APPL2 complex is distinct from the Rab5/APPL1 complex, which is also involved in phagocytosis and signaling.

摘要

吞噬作用早期的膜重塑能够使颗粒或病原体被吞噬,并激活受体信号以启动先天性免疫反应。Rab GTP酶家族成员及其不同的效应器会被依次招募,以调节吞噬作用的各个步骤。Rab31(Rab22b)以调节高尔基体后转运而闻名,在此我们在巨噬细胞中发现,Rab31-GTP还会被特异性地招募到早期吞噬体。在吞噬杯处,Rab31在磷酸肌醇从PI(4,5)P2转变为PI(3,4,5)P3的过程中首先被招募,并持续存在于富含PI(3)P的吞噬体上。在早期吞噬作用中,我们发现Rab31招募信号转导衔接蛋白APPL2。Rab31或APPL2的siRNA敲低会降低FcγR介导的吞噬作用。从机制上讲,这与向PI(3,4,5)P3转变和吞噬杯闭合的延迟相对应。APPL2的敲低还会降低PI3K/Akt信号,并增强FcγR的p38信号。因此,我们得出结论,Rab31/APPL2是巨噬细胞吞噬作用和促生存反应中关键作用所必需的。有趣地是,就定位和功能而言,这种Rab31/APPL2复合物与同样参与吞噬作用和信号传导的Rab5/APPL1复合物不同。

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