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Hippo pathway regulation by cell morphology and stress fibers.

机译:通过细胞形态和应激纤维调节河马途径。

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The Hippo signaling pathway plays an important role in regulation of cell proliferation. Cell density regulates the Hippo pathway in cultured cells; however, the mechanism by which cells detect density remains unclear. In this study, we demonstrated that changes in cell morphology are a key factor. Morphological manipulation of single cells without cell-cell contact resulted in flat spread or round compact cells with nuclear or cytoplasmic Yap, respectively. Stress fibers increased in response to expanded cell areas, and F-actin regulated Yap downstream of cell morphology. Cell morphology- and F-actin-regulated phosphorylation of Yap, and the effects of F-actin were suppressed by modulation of Lats. Our results suggest that cell morphology is an important factor in the regulation of the Hippo pathway, which is mediated by stress fibers consisting of F-actin acting upstream of, or on Lats, and that cells can detect density through their resulting morphology. This cell morphology (stress-fiber)-mediated mechanism probably cooperates with a cell-cell contact (adhesion)-mediated mechanism involving the Hippo pathway to achieve density-dependent control of cell proliferation.
机译:河马信号通路在调节细胞增殖中起重要作用。细胞密度调节培养细胞中的河马途径;然而,细胞检测密度的机制仍不清楚。在这项研究中,我们证明了细胞形态的变化是关键因素。没有细胞与细胞接触的单个细胞的形态学处理分别导致具有核或细胞质Yap的扁平铺展或圆形致密细胞。应激纤维响应于扩大的细胞区域而增加,并且F-肌动蛋白调节细胞形态下游的Yap。细胞形态和F-肌动蛋白调节Yap的磷酸化,以及F-肌动蛋白的作用通过调节Lats受到抑制。我们的结果表明,细胞形态是调控Hippo途径的重要因素,它由由F-肌动蛋白组成的应激纤维介导于Lats上游或Lats介导,并且细胞可以通过其形成的形态检测密度。这种细胞形态(应激纤维)介导的机制可能与涉及Hippo途径的细胞-细胞接触(粘附)介导的机制协同作用,以实现密度依赖性的细胞增殖控制。

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