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巨噬细胞迁移和趋化作用中的细胞信号传导。

Cellular signaling in macrophage migration and chemotaxis.

作者信息

Jones G E

机构信息

The Randall Centre for Molecular Mechanisms of Cell Function, King's College London, United Kingdom.

出版信息

J Leukoc Biol. 2000 Nov;68(5):593-602.

Abstract

Whereas most cells in adult tissues are fixed in place by cell junctions, leukocytes are motile and able to migrate actively through the walls of blood vessels into surrounding tissues. The actin cytoskeleton of these cells plays a central role in locomotion, phagocytosis, and the regulation of cell shape that are crucial elements of neutrophil and monocyte/macrophage function. This review will concentrate on how macrophages in particular control the actin cytoskeleton to generate cell movement and the shape changes required for chemotaxis. It has recently become evident that a complex of seven proteins known as the Arp2/3 complex regulates the assembly of new actin filament networks at the leading front of moving cells. Proteins of the Wiskott-Aldrich Syndrome Protein (WASP) family bind directly to the Arp2/3 complex and stimulate its ability to promote the nucleation of new actin filaments. Upstream of the WASP family proteins, receptor tyrosine kinases, G-protein-coupled receptors, phosphoinositide-3-OH kinase (PI 3-kinase), and the Rho family of GTPases receive and transduce the signals that lead to actin nucleation through WASP-Arp2/3 action. Although many gaps remain in our understanding, we are now in a position to consider completing signaling pathways that are initiated from outside the cell to the actin rearrangements that drive cell motility and chemotaxis.

摘要

在成体组织中,大多数细胞通过细胞连接固定在特定位置,而白细胞具有运动能力,能够主动穿过血管壁迁移到周围组织中。这些细胞的肌动蛋白细胞骨架在运动、吞噬作用以及细胞形状调节中起着核心作用,而这些都是中性粒细胞和单核细胞/巨噬细胞功能的关键要素。本综述将重点关注巨噬细胞如何特别调控肌动蛋白细胞骨架,以产生细胞运动以及趋化作用所需的形状变化。最近已经明确,一种由七种蛋白质组成的复合体,即Arp2/3复合体,在移动细胞的前沿调控新的肌动蛋白丝网络的组装。威斯科特-奥尔德里奇综合征蛋白(WASP)家族的蛋白质直接与Arp2/3复合体结合,并刺激其促进新肌动蛋白丝成核的能力。在WASP家族蛋白质的上游,受体酪氨酸激酶、G蛋白偶联受体、磷酸肌醇-3-羟基激酶(PI 3激酶)以及Rho家族的GTP酶接收并转导通过WASP-Arp2/3作用导致肌动蛋白成核的信号。尽管我们的理解仍存在许多空白,但我们现在能够考虑完善从细胞外部发起的信号通路,直至驱动细胞运动和趋化作用的肌动蛋白重排。

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