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Mechanical stress triggers nuclear remodeling and the formation of transmembrane actin nuclear lines with associated nuclear pore complexes

机译:机械应力触发核重塑与相关核孔隙络合物跨膜肌核线的形成

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摘要

Mechanical stimulation of fibroblasts induces changes in the actin cytoskeleton including stress fiber (SF) reinforcement and realignment. Here we characterize the nuclear response to mechanical stimulation (uniaxial cyclic stretch). Using fluorescence microscopy and quantitative image analysis we find that stretch-induced nuclear elongation and alignment perpendicular to the stretch vector are dependent on formin-regulated actin polymerization. The mechanosensitive transcription factors Yes-associated protein/Transcriptional coactivator with PDZ domain (YAP/TAZ) and myocardin-related transcription factor (MRTF-A, also known as MKL1 and MAL1) accumulate in the nucleus and activate their target genes in response to uniaxial cyclic stretch. We show that transmembrane actin nuclear (TAN) lines are induced by stretch stimulation and nuclear envelope (NE) proteins including nesprins, SUN2, and lamins form Linkers of the Nucleoskeleton and Cytoskeleton (LINC) complexes aligned with actin SFs. These NE structures are altered by pharmacological treatments (Cytochalasin D and Jasplakinolide) or genetic disruption (zyxin gene deletion) that alter actin, and their persistence requires maintenance of stretch stimulation. Nuclear pore complexes (NPCs) accumulate at TAN lines providing a potential mechanism for linking mechanical cues to NPC function.
机译:成纤维细胞的机械刺激诱导肌动蛋白细胞骨架的变化,包括应力纤维(SF)增强和重新调整。在这里,我们表征了对机械刺激的核反应(单轴循环拉伸)。使用荧光显微镜和定量图像分析,我们发现延伸诱导的核伸长率和垂直于拉伸载体的对准取决于甲蛋白调节的肌动蛋白聚合。机机敏转录因子是相关的蛋白质/转录共粘膜与PDZ结构域(YAP / TAZ)和心肌素相关的转录因子(MRTF-A,也称为MKL1和MAL1)积聚在细胞核中,并响应单轴而激活它们的靶基因循环伸展。我们表明,通过拉伸刺激和核包封(Ne)蛋白(包括Nesprins,Sun2和层状蛋白(Ne)骨质蛋白诱导核骨架和核心骨架(LINC)复合物与肌动蛋白SFS对齐的链接剂诱导的跨膜肌蛋白核(TAN)线。这些NE结构由药理治疗(细胞蛋白酶D和Jasplakinolide)或改变肌动蛋白的遗传破坏(Zyxin基因缺失)而改变,并且它们的持久性需要维持拉伸刺激。核心络合物(NPC)在棕褐色线上积聚,提供将机械提示连接到NPC功能的潜在机制。

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