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波形蛋白3(WAVE3)与核因子κB(NFκB)的相互作用对癌细胞的存活和侵袭至关重要。

WAVE3-NFκB interplay is essential for the survival and invasion of cancer cells.

作者信息

Davuluri Gangarao, Augoff Katarzyna, Schiemann William P, Plow Edward F, Sossey-Alaoui Khalid

机构信息

Department of Molecular Cardiology, Cleveland Clinic Lerner Institute, Cleveland, Ohio, United States of America.

Case Comprehensive Cancer Center, Case Western Reserve University, Cleveland, Ohio, United States of America.

出版信息

PLoS One. 2014 Oct 16;9(10):e110627. doi: 10.1371/journal.pone.0110627. eCollection 2014.

Abstract

The WAVE3 cytoskeletal protein promotes cancer invasion and metastasis. We have shown that the WAVE3-mediated activation of cancer cell invasion is due, in part, to its regulation of expression and activity of key metalloproteinases (MMPs), including MMP9, which is centrally involved in invadopodia-mediated degradation of the extracellular matrix (ECM). MMP9 is also a major NFκB target gene, suggesting a potential linkage of WAVE3 to this pathway, which we sought to investigate. Mechanistically, we found that loss of WAVE3 in cancer cells leads to inhibition of NFκB signaling as a result of a decrease in the nuclear translocation of NFκB and therefore loss of activation of NFκB target genes. Conversely, overexpression of WAVE3 was sufficient to enhance NFκB activity. Both pharmacologic and genetic manipulations of NFκB effector molecules show that the biological consequence of loss of WAVE3 function in the NFκB pathway result the inhibition of invadopodia formation and ECM degradation by cancer cells, and these changes are a consequence of decreased MMP9 expression and activity. Loss of WAVE3 also sensitized cancer cells to apoptosis and cell death driven by TNFα, through the inhibition of the AKT pro-survival pathway. Our results identify a novel function of WAVE3 in NFκB signaling, where its activity is essential for the regulation of invadopodia and ECM degradation. Therefore, targeted therapeutic inhibition of WAVE3 will sensitize cancer cells to apoptosis and cell death, and suppress cancer invasion and metastasis.

摘要

WAVE3细胞骨架蛋白促进癌症侵袭和转移。我们已经表明,WAVE3介导的癌细胞侵袭激活部分归因于其对关键金属蛋白酶(MMPs)表达和活性的调节,包括MMP9,MMP9在侵袭伪足介导的细胞外基质(ECM)降解中起核心作用。MMP9也是主要的NFκB靶基因,提示WAVE3与该信号通路存在潜在联系,我们对此进行了研究。从机制上讲,我们发现癌细胞中WAVE3的缺失导致NFκB信号传导受到抑制,这是由于NFκB核转位减少,进而导致NFκB靶基因激活丧失。相反,WAVE3的过表达足以增强NFκB活性。对NFκB效应分子进行药理学和遗传学操作均表明,NFκB信号通路中WAVE3功能丧失的生物学后果是癌细胞侵袭伪足形成和ECM降解受到抑制,而这些变化是MMP9表达和活性降低的结果。WAVE3的缺失还通过抑制AKT促生存途径使癌细胞对TNFα驱动的凋亡和细胞死亡敏感。我们的研究结果确定了WAVE3在NFκB信号传导中的新功能,其活性对于调节侵袭伪足和ECM降解至关重要。因此,靶向治疗性抑制WAVE3将使癌细胞对凋亡和细胞死亡敏感,并抑制癌症侵袭和转移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4846/4199728/54ab3572179e/pone.0110627.g001.jpg

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