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Lateral Communication between Stress Fiber Sarcomeres Facilitates a Local Remodeling Response

机译:应力纤维肉瘤之间的横向沟通促进了局部重塑反应

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摘要

Actin stress fibers (SFs) are load-bearing and mechanosensitive structures. To our knowledge, the mechanisms that enable SFs to sense and respond to strain have not been fully defined. Acute local strain events can involve a twofold extension of a single SF sarcomere, but how these dramatic local events affect the overall SF architecture is not believed to be understood. Here we have investigated how SF architecture adjusts to episodes of local strain that occur in the cell center. Using fluorescently tagged zyxin to track the borders of sarcomeres, we characterize the dynamics of resting sarcomeres and strain-site sarcomeres. We find that sarcomeres flanking a strain site undergo rapid shortening that directly compensates for the strain-site extension, illustrating lateral communication of mechanical information along the length of a stress fiber. When a strain-site sarcomere extends asymmetrically, its adjacent sarcomeres exhibit a parallel asymmetric shortening response, illustrating that flanking sarcomeres respond to strain magnitude. After extension, strain-site sarcomeres become locations of new sarcomere addition, highlighting mechanical strain as a trigger of sarcomere addition and revealing a, to our knowledge, novel type of SF remodeling. Our findings provide evidence to suggest SF sarcomeres act as strain sensors and are interconnected to support communication of mechanical information.
机译:肌动蛋白应力纤维(SFs)是承重和机械敏感结构。据我们所知,使SF感知和响应应变的机制尚未完全定义。急性局部应变事件可能涉及单个SF肌节的两倍扩展,但人们认为这些戏剧性的局部事件如何影响整个SF结构并不令人理解。在这里,我们研究了SF体系结构如何适应细胞中心发生的局部应变。使用荧光标记的zyxin跟踪肉瘤的边界,我们表征静息肉瘤和应变部位肉瘤的动力学。我们发现,位于应变位点两侧的肉瘤会迅速缩短,直接补偿了应变位点的延伸,说明了沿应力纤维长度方向的机械信息的横向传递。当应变部位的肉瘤不对称延伸时,其相邻的肉瘤会表现出平行的不对称缩短反应,说明侧翼肉瘤对应变幅度有反应。扩展后,应变部位的肉瘤成为新肌节添加的位置,突显出机械应变是肌节添加的触发因素,并据我们所知揭示了一种新型的SF重塑。我们的发现提供了证据,表明SF肉瘤可作为应变传感器,并相互连接以支持机械信息的交流。

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