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Zyxin Is Involved in Fibroblast Rigidity Sensing and Durotaxis

机译:Zyxin 参与成纤维细胞刚性感应和调节性

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摘要

Focal adhesions (FAs) are specialized structures that enable cells to sense their extracellular matrix rigidity and transmit these signals to the interior of the cells, bringing about actin cytoskeleton reorganization, FA maturation, and cell migration. It is known that cells migrate towards regions of higher substrate rigidity, a phenomenon known as durotaxis. However, the underlying molecular mechanism of durotaxis and how different proteins in the FA are involved remain unclear. Zyxin is a component of the FA that has been implicated in connecting the actin cytoskeleton to the FA. We have found that knocking down zyxin impaired NIH3T3 fibroblast’s ability to sense and respond to changes in extracellular matrix in terms of their FA sizes, cell traction stress magnitudes and F-actin organization. Cell migration speed of zyxin knockdown fibroblasts was also independent of the underlying substrate rigidity, unlike wild type fibroblasts which migrated fastest at an intermediate substrate rigidity of 14 kPa. Wild type fibroblasts exhibited durotaxis by migrating toward regions of increasing substrate rigidity on polyacrylamide gels with substrate rigidity gradient, while zyxin knockdown fibroblasts did not exhibit durotaxis. Therefore, we propose zyxin as an essential protein that is required for rigidity sensing and durotaxis through modulating FA sizes, cell traction stress and F-actin organization.
机译:黏着斑 (FA) 是一种特殊的结构,使细胞能够感知其细胞外基质的刚性并将这些信号传递到细胞内部,从而带来肌动蛋白细胞骨架重组、FA 成熟和细胞迁移。众所周知,细胞会迁移到基质刚度较高的区域,这种现象称为 durotaxis。然而,durotaxis 的潜在分子机制以及 FA 中的不同蛋白质如何参与仍不清楚。Zyxin 是 FA 的一个组分,与将肌动蛋白细胞骨架连接到 FA 有关。我们发现,敲除 zyxin 会损害 NIH3T3 成纤维细胞感知和响应细胞外基质变化的能力,包括 FA 大小、细胞牵引应激幅度和 F-肌动蛋白组织。zyxin 敲低成纤维细胞的细胞迁移速度也与底层底物刚度无关,这与野生型成纤维细胞不同,野生型成纤维细胞在 14 kPa 的中间底物刚度下迁移最快。野生型成纤维细胞通过以底物刚性梯度迁移到聚丙烯酰胺凝胶上底物刚性增加的区域来表现出双重活性,而 zyxin 敲低成纤维细胞没有表现出双重活性。因此,我们提出 zyxin 作为一种必需蛋白,通过调节 FA 大小、细胞牵引应激和 F-肌动蛋白组织来实现刚性感应和调节性。

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