Willer Margaret K, Carroll Christopher W
Dept. Of Cell Biology, Yale School of Medicine, New Haven, CT 06520, USA.
Dept. Of Cell Biology, Yale School of Medicine, New Haven, CT 06520, USA
J Cell Sci. 2017 Jul 1;130(13):2111-2118. doi: 10.1242/jcs.197517. Epub 2017 Jun 2.
The complex comprising serum response factor (SRF) and megakaryoblastic leukemia 1 protein (Mkl1) promotes myofibroblast differentiation during wound healing. SRF-Mkl1 is sensitive to the mechanical properties of the extracellular environment; but how cells sense and transduce mechanical cues to modulate SRF-Mkl1-dependent gene expression is not well understood. Here, we demonstrate that the nuclear lamina-associated inner nuclear membrane protein Emerin stimulates SRF-Mkl1-dependent gene activity in a substrate stiffness-dependent manner. Specifically, Emerin was required for Mkl1 nuclear accumulation and maximal SRF-Mkl1-dependent gene expression in response to serum stimulation of cells grown on stiff substrates but was dispensable on more compliant substrates. Focal adhesion area was also reduced in cells lacking Emerin, consistent with a role for Emerin in sensing substrate stiffness. Expression of a constitutively active form of Mkl1 bypassed the requirement for Emerin in SRF-Mkl1-dependent gene expression and reversed the focal adhesion defects evident in Emd fibroblasts. Together, these data indicate that Emerin, a conserved nuclear lamina protein, couples extracellular matrix mechanics and SRF-Mkl1-dependent transcription.
由血清反应因子(SRF)和巨核母细胞白血病1蛋白(Mkl1)组成的复合物在伤口愈合过程中促进肌成纤维细胞分化。SRF-Mkl1对细胞外环境的机械特性敏感;但细胞如何感知并转导机械信号以调节SRF-Mkl1依赖的基因表达尚不清楚。在此,我们证明核纤层相关的内核膜蛋白Emerin以底物硬度依赖的方式刺激SRF-Mkl1依赖的基因活性。具体而言,在对生长于坚硬底物上的细胞进行血清刺激时,Emerin是Mkl1核积累及最大程度的SRF-Mkl1依赖基因表达所必需的,但在更柔软的底物上则并非必需。缺乏Emerin的细胞中黏着斑面积也减小,这与Emerin在感知底物硬度方面的作用一致。组成型激活形式的Mkl1的表达绕过了SRF-Mkl1依赖基因表达中对Emerin的需求,并逆转了Emd成纤维细胞中明显的黏着斑缺陷。总之,这些数据表明,作为一种保守的核纤层蛋白,Emerin将细胞外基质力学与SRF-Mkl1依赖的转录联系起来。