Havel L S, Kline E R, Salgueiro A M, Marcus A I
Department of Hematology and Medical Oncology, Winship Cancer Institute of Emory University, Atlanta, GA, USA.
Oncogene. 2015 Apr 9;34(15):1979-90. doi: 10.1038/onc.2014.123. Epub 2014 May 26.
Vimentin is an intermediate filament protein whose expression correlates with increased metastatic disease, reduced patient survival and poor prognosis across multiple tumor types. Despite these well-characterized correlations, the molecular role of vimentin in cancer cell motility remains undefined. To approach this, we used an unbiased phosphoproteomics screen in lung cancer cell lines to discover cell motility proteins that show significant changes in phosphorylation upon vimentin depletion. We identified the guanine nucleotide exchange factor (GEF), VAV2, as having the greatest loss of phosphorylation owing to vimentin depletion. Since VAV2 serves as a GEF for the small Rho GTPase Rac1, a key player in cell motility and adhesion, we explored the vimentin-VAV2 pathway as a potential novel regulator of lung cancer cell motility. We show that VAV2 localizes to vimentin-positive focal adhesions (FAs) in lung cancer cells and complexes with vimentin and FA kinase (FAK). Vimentin loss impairs both pY142-VAV2 and downstream pY397-FAK activity showing that vimentin is critical for maintaining VAV2 and FAK activity. Importantly, vimentin depletion reduces the activity of the VAV2 target, Rac1, and a constitutively active Rac1 rescues defects in FAK and cell adhesion when vimentin or VAV2 is compromised. Based upon this data, we propose a model whereby vimentin promotes FAK stabilization through VAV2-mediated Rac1 activation. This model may explain why vimentin expressing metastatic lung cancer cells are more motile and invasive.
波形蛋白是一种中间丝蛋白,其表达与多种肿瘤类型中转移性疾病增加、患者生存率降低和预后不良相关。尽管存在这些已明确的相关性,但波形蛋白在癌细胞迁移中的分子作用仍不明确。为了解决这个问题,我们在肺癌细胞系中进行了一项无偏向性的磷酸化蛋白质组学筛选,以发现波形蛋白缺失时磷酸化发生显著变化的细胞迁移蛋白。我们鉴定出鸟嘌呤核苷酸交换因子(GEF)VAV2,由于波形蛋白缺失,其磷酸化损失最大。由于VAV2作为小Rho GTP酶Rac1的GEF,而Rac1是细胞迁移和黏附中的关键因子,我们探索了波形蛋白-VAV2通路作为肺癌细胞迁移的潜在新型调节因子。我们发现VAV2定位于肺癌细胞中波形蛋白阳性的粘着斑(FAs),并与波形蛋白和粘着斑激酶(FAK)形成复合物。波形蛋白缺失会损害pY142-VAV2和下游pY397-FAK的活性,表明波形蛋白对于维持VAV2和FAK的活性至关重要。重要的是,波形蛋白缺失会降低VAV2靶标Rac1的活性,当波形蛋白或VAV2受损时,组成型活性Rac1可挽救FAK和细胞黏附方面的缺陷。基于这些数据,我们提出了一个模型,即波形蛋白通过VAV2介导的Rac1激活促进FAK稳定。该模型可能解释了表达波形蛋白的转移性肺癌细胞为何更具迁移性和侵袭性。