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Dynamic actin remodeling during epithelial–mesenchymal transition depends on increased moesin expression

机译:上皮-间质转化过程中的动态肌动蛋白重塑取决于增加的肌动蛋白表达

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摘要

Remodeling of actin filaments is necessary for epithelial–mesenchymal transition (EMT); however, understanding of how this is regulated in real time is limited. We used an actin filament reporter and high-resolution live-cell imaging to analyze the regulated dynamics of actin filaments during transforming growth factor-β–induced EMT of mammary epithelial cells. Progressive changes in cell morphology were accompanied by reorganization of actin filaments from thin cortical bundles in epithelial cells to thick, parallel, contractile bundles that disassembled more slowly but remained dynamic in transdifferentiated cells. We show that efficient actin filament remodeling during EMT depends on increased expression of the ezrin/radixin/moesin (ERM) protein moesin. Cells suppressed for moesin expression by short hairpin RNA had fewer, thinner, and less stable actin bundles, incomplete morphological transition, and decreased invasive capacity. These cells also had less α-smooth muscle actin and phosphorylated myosin light chain in cortical patches, decreased abundance of the adhesion receptor CD44 at membrane protrusions, and attenuated autophosphorylation of focal adhesion kinase. Our findings suggest that increased moesin expression promotes EMT by regulating adhesion and contractile elements for changes in actin filament organization. We propose that the transciptional program driving EMT controls progressive remodeling of actin filament architectures.
机译:肌动蛋白丝的重塑对于上皮-间质转化(EMT)是必要的。但是,对于如何实时调节这一点的理解是有限的。我们使用肌动蛋白丝报告基因和高分辨率活细胞成像分析了转化生长因子-β诱导的乳腺上皮细胞EMT过程中肌动蛋白丝的调节动力学。细胞形态的逐步变化伴随着肌动蛋白丝的重组,从上皮细胞中的薄皮质束变为粗,平行,可收缩的束,其分解速度较慢,但​​在转分化细胞中仍保持动态。我们显示,EMT期间有效的肌动蛋白丝重塑取决于ezrin / radixin / moesin(ERM)蛋白moesin的表达增加。短发夹RNA抑制moesin表达的细胞具有更少,更薄和更不稳定的肌动蛋白束,形态学转换不完整以及侵袭能力降低。这些细胞在皮质斑块中还具有较少的α-平滑肌肌动蛋白和磷酸化的肌球蛋白轻链,在膜突出处的粘附受体CD44的丰度降低,以及粘着斑激酶的自磷酸化减弱。我们的发现表明,增加的肌动蛋白表达通过调节肌动蛋白丝组织变化的粘附力和收缩因子来促进EMT。我们建议驱动EMT的后继程序控制肌动蛋白丝结构的逐步重塑。

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