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钙蛋白酶的抑制作用可使足体稳定,并损害树突状细胞的运动能力。

Inhibition of calpain stabilises podosomes and impairs dendritic cell motility.

作者信息

Calle Yolanda, Carragher Neil O, Thrasher Adrian J, Jones Gareth E

机构信息

Randall Division of Cell and Molecular Biophysics, King's College London, New Hunt's House, Guy's Campus, UK.

出版信息

J Cell Sci. 2006 Jun 1;119(Pt 11):2375-85. doi: 10.1242/jcs.02939.

Abstract

Podosomes, highly dynamic adhesion structures implicated in cell motility and extracellular matrix degradation, are characteristic of certain cells of the myeloid lineage and a limited range of other cell types. The nature and the mechanisms that regulate their high turnover are unknown at present. The cysteine protease calpain is involved in the regulation of cell migration in part by promoting either formation or disassembly of adhesion sites. Despite the fact that many known substrates of calpain are also structural components of the podosome complex, no studies have yet demonstrated that calpain participates in the regulation of podosome dynamics. In the present work, we show that inhibition of calpain in primary mouse dendritic cells leads to enhanced accumulation of actin filaments, the Wiskott Aldrich Syndrome protein (WASP), beta(2) integrins, talin, paxillin and vinculin in podosomes. This accumulation of components is associated with stabilisation of podosome turnover, overall reduction in velocity of cell locomotion and impaired transmigration across an endothelial monolayer. We also demonstrate that calpain cleaves the podosome components talin, Pyk2 and WASP in dendritic cells. In summary, our results provide evidence that calpain regulates podosome composition and turnover and that this process is required for efficient migration of dendritic cells.

摘要

足体是与细胞运动和细胞外基质降解相关的高度动态的粘附结构,是髓系谱系某些细胞及其他有限类型细胞的特征。目前尚不清楚调节其高周转率的性质和机制。半胱氨酸蛋白酶钙蛋白酶部分通过促进粘附位点的形成或分解参与细胞迁移的调节。尽管钙蛋白酶的许多已知底物也是足体复合物的结构成分,但尚无研究表明钙蛋白酶参与足体动力学的调节。在本研究中,我们发现抑制原代小鼠树突状细胞中的钙蛋白酶会导致肌动蛋白丝、威斯科特·奥尔德里奇综合征蛋白(WASP)、β2整合素、踝蛋白、桩蛋白和纽蛋白在足体中积累增加。这些成分的积累与足体周转率的稳定、细胞运动速度的整体降低以及跨内皮单层迁移受损有关。我们还证明钙蛋白酶可切割树突状细胞中的足体成分踝蛋白、酪氨酸激酶2(Pyk2)和WASP。总之,我们的结果提供了证据表明钙蛋白酶调节足体组成和周转率,并且这一过程是树突状细胞有效迁移所必需的。

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