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Fc 受体介导的吞噬作用中,由 PI 3-kinase 协调的 Cdc42 激活循环。

A Cdc42 activation cycle coordinated by PI 3-kinase during Fc receptor-mediated phagocytosis.

机构信息

Cellular and Molecular Biology Graduate Program, and Biophysics Graduate Program, University of Michigan, Ann Arbor, MI, USA.

出版信息

Mol Biol Cell. 2010 Feb 1;21(3):470-80. doi: 10.1091/mbc.e08-05-0494. Epub 2009 Dec 2.

Abstract

Fcgamma Receptor (FcR)-mediated phagocytosis by macrophages requires phosphatidylinositol 3-kinase (PI3K) and activation of the Rho-family GTPases Cdc42 and Rac1. Cdc42 is activated at the advancing edge of the phagocytic cup, where actin is concentrated, and is deactivated at the base of the cup. The timing of 3' phosphoinositide (3'PI) concentration changes in cup membranes suggests a role for 3'PIs in deactivation of Cdc42. This study examined the relationships between PI3K and the patterns of Rho-family GTPase signaling during phagosome formation. Inhibition of PI3K resulted in persistently active Cdc42 and Rac1, but not Rac2, in stalled phagocytic cups. Patterns of 3'PIs and Rho-family GTPase activities during phagocytosis of 5- and 2-mum-diameter microspheres indicated similar underlying mechanisms despite particle size-dependent sensitivities to PI3K inhibition. Expression of constitutively active Cdc42(G12V) increased 3'PI concentrations in plasma membranes and small phagosomes, indicating a role for Cdc42 in PI3K activation. Cdc42(G12V) inhibited phagocytosis at a later stage than inhibition by dominant negative Cdc42(N17). Together, these studies identified a Cdc42 activation cycle organized by PI3K, in which FcR-activated Cdc42 stimulates PI3K and actin polymerization, and the subsequent increase of 3'PIs in cup membranes inactivates Cdc42 to allow actin recycling necessary for phagosome formation.

摘要

Fc 受体(FcR)介导的巨噬细胞吞噬作用需要磷脂酰肌醇 3-激酶(PI3K)和 Rho 家族 GTPases Cdc42 和 Rac1 的激活。Cdc42 在吞噬杯的前沿激活,那里聚集了肌动蛋白,并在杯的底部失活。杯膜中 3'磷酸肌醇(3'PI)浓度变化的时间提示 3'PIs 在 Cdc42 失活中的作用。本研究检查了 PI3K 与 Rho 家族 GTPase 信号在吞噬体形成过程中的关系。PI3K 的抑制导致停滞的吞噬杯中持续活跃的 Cdc42 和 Rac1,但不是 Rac2。5-和 2-μm 直径微球吞噬过程中的 3'PIs 和 Rho 家族 GTPase 活性模式表明,尽管颗粒大小依赖性对 PI3K 抑制敏感,但存在类似的潜在机制。组成性激活的 Cdc42(G12V) 在质膜和小吞噬体中增加 3'PI 浓度,表明 Cdc42 在 PI3K 激活中的作用。Cdc42(G12V) 的抑制作用比显性失活的 Cdc42(N17) 晚。这些研究一起确定了一个由 PI3K 组织的 Cdc42 激活循环,其中 FcR 激活的 Cdc42 刺激 PI3K 和肌动蛋白聚合,随后杯膜中 3'PIs 的增加使 Cdc42 失活,从而允许形成吞噬体所需的肌动蛋白回收。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a412/2814791/e0202dcda5f3/zmk0031093350001.jpg

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