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EB1 Restricts Breast Cancer Cell Invadopodia Formation and Matrix Proteolysis via FAK

机译:EB1通过FAK限制乳腺癌细胞invidopodia形成和基质蛋白水解

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摘要

Regulation of microtubule dynamics by plus-end tracking proteins (+TIPs) plays an essential role in cancer cell migration. However, the role of +TIPs in cancer cell invasion has been poorly addressed. Invadopodia, actin-rich protrusions specialized in extracellular matrix degradation, are essential for cancer cell invasion and metastasis, the leading cause of death in breast cancer. We, therefore, investigated the role of the End Binding protein, EB1, a major hub of the +TIP network, in invadopodia functions. EB1 silencing increased matrix degradation by breast cancer cells. This was recapitulated by depletion of two additional +TIPs and EB1 partners, APC and ACF7, but not by the knockdown of other +TIPs, such as CLASP1/2 or CLIP170. The knockdown of Focal Adhesion Kinase (FAK) was previously proposed to similarly promote invadopodia formation as a consequence of a switch of the Src kinase from focal adhesions to invadopodia. Interestingly, EB1-, APC-, or ACF7-depleted cells had decreased expression/activation of FAK. Remarkably, overexpression of wild type FAK, but not of FAK mutated to prevent Src recruitment, prevented the increased degradative activity induced by EB1 depletion. Overall, we propose that EB1 restricts invadopodia formation through the control of FAK and, consequently, the spatial regulation of Src activity.
机译:通过正端跟踪蛋白(+提示)对微管动态的调节在癌细胞迁移中起重要作用。然而,+提示在癌细胞入侵中的作用是不良的。 Invidopodia,富含细胞外基质降解的富含蛋白质的突起,对癌细胞侵袭和转移至关重要,乳腺癌中死亡的主要原因是必不可少的。因此,我们研究了invidopodia功能的终端结合蛋白,EB1,+尖端网络的主要集线器的作用。 EB1沉默增加乳腺癌细胞的基质降解。这通过两种附加+提示和EB1合作伙伴,APC和ACF7的耗尽来概括,但不是由其他+提示的敲低,例如Clasp1 / 2或剪辑170。先前提出了局灶性粘附激酶(FAK)的敲低,以类似地促进Invidopodia形成,因为SRC激酶从局灶性粘连到invidopodia的开关。有趣的是,EB1,APC-或ACF7耗尽的细胞已经降低了FAK的表达/激活。值得注意的是,野生型FAK的过度表达,但FAK不突变以防止SRC募集,阻止了EB1耗竭诱导的降解活性增加。总体而言,我们提出EB1通过对FAK的控制来限制invidopodia形成,并且因此,SRC活动的空间调节。

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