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Vimentin contributes to epithelial-mesenchymal transition cancer cell mechanics by mediating cytoskeletal organization and focal adhesion maturation

机译:波形蛋白通过介导细胞骨架组织和粘着斑成熟来促进上皮-间质转化癌细胞的机制

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摘要

Modulations of cytoskeletal organization and focal adhesion turnover correlate to tumorigenesis and epithelial-mesenchymal transition (EMT), the latter process accompanied by the loss of epithelial markers and the gain of mesenchymal markers (e.g., vimentin). Clinical microarray results demonstrated that increased levels of vimentin mRNA after chemotherapy correlated to a poor prognosis of breast cancer patients. We hypothesized that vimentin mediated the reorganization of cytoskeletons to maintain the mechanical integrity in EMT cancer cells. By using knockdown strategy, the results showed reduced cell proliferation, impaired wound healing, loss of directional migration, and increased large membrane extension in MDA-MB 231 cells. Vimentin depletion also induced reorganization of cytoskeletons and reduced focal adhesions, which resulted in impaired mechanical strength because of reduced cell stiffness and contractile force. In addition, overexpressing vimentin in MCF7 cells increased cell stiffness, elevated cell motility and directional migration, reoriented microtubule polarity, and increased EMT phenotypes due to the increased β1-integrin and the loss of junction protein E-cadherin. The EMT-related transcription factor slug was also mediated by vimentin. The current study demonstrated that vimentin serves as a regulator to maintain intracellular mechanical homeostasis by mediating cytoskeleton architecture and the balance of cell force generation in EMT cancer cells.
机译:细胞骨架组织和粘着粘附转换的调节与肿瘤发生和上皮-间质转化(EMT)相关,后者的过程伴随着上皮标记物的丢失和间充质标记物(例如波形蛋白)的获得。临床芯片结果表明,化疗后波形蛋白mRNA的水平升高与乳腺癌患者的预后不良有关。我们假设波形蛋白介导细胞骨架的重组,以维持EMT癌细胞的机械完整性。通过使用敲低策略,结果显示MDA-MB 231细胞中的细胞增殖减少,伤口愈合受损,方向迁移损失以及大膜延伸增加。波形蛋白的耗竭还诱导细胞骨架的重组和粘着斑减少,由于细胞刚度和收缩力降低,导致机械强度受损。此外,由于β1-整合素的增加和连接蛋白E-钙黏着蛋白的缺失,MCF7细胞中过表达波形蛋白的细胞增加了细胞的刚度,细胞运动性和方向迁移,微管极性改变了方向,并增加了EMT表型。 EMT相关转录因子段也由波形蛋白介导。当前的研究表明波形蛋白通过介导EMT癌细胞的细胞骨架结构和细胞力产生的平衡,来维持细胞内机械稳态。

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