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Keeping the Vimentin Network under Control: Cell–Matrix Adhesion–associated Plectin 1f Affects Cell Shape and Polarity of Fibroblasts

机译:保持波形蛋白网络受控:细胞基质粘附相关的Plectin 1f影响成纤维细胞的细胞形状和极性

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Focal adhesions (FAs) located at the ends of actin/myosin-containing contractile stress fibers form tight connections between fibroblasts and their underlying extracellular matrix. We show here that mature FAs and their derivative fibronectin fibril-aligned fibrillar adhesions (FbAs) serve as docking sites for vimentin intermediate filaments (IFs) in a plectin isoform 1f (P1f)-dependent manner. Time-lapse video microscopy revealed that FA-associated P1f captures mobile vimentin filament precursors, which then serve as seeds for de novo IF network formation via end-to-end fusion with other mobile precursors. As a consequence of IF association, the turnover of FAs is reduced. P1f-mediated IF network formation at FbAs creates a resilient cage-like core structure that encases and positions the nucleus while being stably connected to the exterior of the cell. We show that the formation of this structure affects cell shape with consequences for cell polarization.
机译:位于含肌动蛋白/肌球蛋白的收缩应激纤维末端的粘着斑(FAs)在成纤维细胞及其下方的细胞外基质之间形成紧密连接。我们在这里显示,成熟的FA及其衍生的纤连蛋白原纤维对齐的原纤维粘连(FbAs)以凝集素同工型1f(P1f)依赖性方式充当波形蛋白中间丝(IF)的停靠位。延时视频显微镜显示,与FA相关的P1f捕获了移动波形蛋白细丝前体,然后通过与其他移动前体的端到端融合,充当了从头形成IF网络的种子。由于中频协会,FA的营业额减少。在FbA处由Plf介导的IF网络的形成产生了一种弹性的笼状核心结构,该结构包裹并定位了核,同时稳定地连接到了细胞的外部。我们表明这种结构的形成会影响细胞的形状,并对细胞的极化产生影响。

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