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WIP 的 cortactin 结合域对于鼠树突状细胞的足突形成和细胞外基质降解是必需的。

The cortactin-binding domain of WIP is essential for podosome formation and extracellular matrix degradation by murine dendritic cells.

机构信息

Cellular and Molecular Department, Centro Nacional de Biotecnología - CSIC, Madrid 28049, Spain.

出版信息

Eur J Cell Biol. 2011 Feb-Mar;90(2-3):213-23. doi: 10.1016/j.ejcb.2010.09.001. Epub 2010 Oct 16.

Abstract

In immature dendritic cells (DCs) podosomes form and turn over behind the leading edge of migrating cells. The Arp2/3 complex activator Wiskott-Aldrich Syndrome Protein (WASP) localises to the actin core of forming podosomes together with WASP-Interacting Protein (WIP). A second weaker Arp2/3 activator, cortactin, is also found at podosomes where it has been proposed to participate in matrix metalloproteinase (MMP) secretion. We have previously shown that WIP(-/-) DCs are unable to make podosomes. WIP binds to cortactin and in this report we address whether WIP regulates cortactin-mediated MMP activity. Using DCs derived from splenic murine precursors, we found that wild-type cells were able to localise MMPs at podosomes where matrix degradation takes place. In contrast, WIP(-/-) DCs remain able to synthesise MMPs but do not degrade the extracellular matrix. Infection of WIP KO DCs with lentivirus expressing WIP restored both podosome formation and their ability to degrade the extracellular matrix, implicating WIP-induced podosomes as foci of functional MMP location. When WIP KO DCs were infected with a mutant form of WIP lacking the cortactin-binding domain (WIPΔ110-170) DCs were only able to elaborate disorganised podosomes that were unable to support MMP-mediated matrix degradation. Taken together, these results suggest a role for WIP not only in WASP-mediated actin polymerisation and podosome formation, but also in cortactin-mediated extracellular matrix degradation by MMPs.

摘要

在不成熟的树突状细胞(DCs)中,足突在迁移细胞的前缘后方形成并翻转。Arp2/3 复合物激活蛋白威斯科特-奥尔德里奇综合征蛋白(WASP)与 WASP 相互作用蛋白(WIP)一起定位于形成足突的肌动蛋白核心。第二种较弱的 Arp2/3 激活蛋白,桩蛋白,也存在于足突中,有人提出它参与基质金属蛋白酶(MMP)的分泌。我们之前已经表明,WIP(-/-)DC 无法形成足突。WIP 与桩蛋白结合,在本报告中,我们研究了 WIP 是否调节桩蛋白介导的 MMP 活性。使用源自脾前体细胞的 DC,我们发现野生型细胞能够将 MMP 定位在发生基质降解的足突处。相比之下,WIP(-/-)DC 仍然能够合成 MMP,但不能降解细胞外基质。用表达 WIP 的慢病毒感染 WIP KO DC,恢复了足突的形成及其降解细胞外基质的能力,这表明 WIP 诱导的足突是功能性 MMP 定位的焦点。当 WIP KO DC 被感染缺乏桩蛋白结合域的 WIP 突变体(WIPΔ110-170)时,DC 只能形成无法支持 MMP 介导的基质降解的紊乱足突。总之,这些结果表明 WIP 不仅在 WASP 介导的肌动蛋白聚合和足突形成中起作用,而且在 MMP 介导的细胞外基质降解中也起作用。

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