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Vimentin Levels and Serine 71 Phosphorylation in the Control of Cell-Matrix Adhesions Migration Speed and Shape of Transformed Human Fibroblasts

机译:波形蛋白水平和丝氨酸71磷酸化在细胞基质粘附迁移速度和转化的人类成纤维细胞的形状的控制。

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摘要

Metastasizing tumor cells show increased expression of the intermediate filament (IF) protein vimentin, which has been used to diagnose invasive tumors for decades. Recent observations indicate that vimentin is not only a passive marker for carcinoma, but may also induce tumor cell invasion. To clarify how vimentin IFs control cell adhesions and migration, we analyzed the nanoscale (30–50 nm) spatial organization of vimentin IFs and cell-matrix adhesions in metastatic fibroblast cells, using three-color stimulated emission depletion (STED) microscopy. We also studied whether wild-type and phospho-deficient or -mimicking mutants of vimentin changed the size and lifetime of focal adhesions (FAs), cell shape, and cell migration, using live-cell total internal reflection imaging and confocal microscopy. We observed that vimentin exists in fragments of different lengths. Short fragments were mostly the size of a unit-length filament and were mainly localized close to small cell-matrix adhesions. Long vimentin filaments were found in the proximity of large FAs. Vimentin expression in these cells caused a reduction in FAs size and an elongated cell shape, but did not affect FA lifetime, or the speed or directionality of cell migration. Expression of a phospho-mimicking mutant (S71D) of vimentin increased the speed of cell migration. Taken together, our results suggest that in highly migratory, transformed mesenchymal cells, vimentin levels control the cell shape and FA size, but not cell migration, which instead is linked to the phosphorylation status of S71 vimentin. These observations are consistent with the possibility that not only levels, but also the assembly status of vimentin control cell migration.
机译:转移性肿瘤细胞显示中间丝(IF)波形蛋白的表达增加,该蛋白已被用于诊断浸润性肿瘤数十年。最近的观察表明波形蛋白不仅是癌的被动标志物,而且还可能诱导肿瘤细胞侵袭。为了阐明波形蛋白IFs如何控制细胞黏附和迁移,我们使用三色激发发射耗竭(STED)显微镜分析了波形蛋白IFs的纳米级(30–50 nm)空间结构和转移性成纤维细胞中的细胞基质黏附。我们还使用活细胞全内反射成像和共聚焦显微镜研究了波形蛋白的野生型和缺磷或模仿类的突变体是否改变了粘着斑(FAs)的大小和寿命,细胞形状和细胞迁移。我们观察到波形蛋白存在于不同长度的片段中。短片段主要是单位长度细丝的大小,并且主要定位在靠近小细胞基质粘附的位置。在大型FA附近发现长波形蛋白丝。这些细胞中波形蛋白的表达导致FAs大小的减少和细长的细胞形状,但不影响FA的寿命或细胞迁移的速度或方向。波形蛋白的磷酸化模仿突变体(S71D)的表达增加了细胞迁移的速度。两者合计,我们的结果表明,在高度迁移,转化的间充质细胞中,波形蛋白水平控制细胞形状和FA大小,但不控制细胞迁移,而是与S71波形蛋白的磷酸化状态有关。这些观察结果与波形蛋白不仅水平而且组装状态控制细胞迁移的可能性是一致的。

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