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首页> 外文期刊>Current Biology: CB >Mechanical Role of Actin Dynamics in the Rheology of the Golgi Complex and in Golgi-Associated Trafficking Events
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Mechanical Role of Actin Dynamics in the Rheology of the Golgi Complex and in Golgi-Associated Trafficking Events

机译:肌动蛋白动力学在高尔基体流变学和高尔基体相关的贩运事件中的机械作用。

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Background: In vitro studies have shown that physical parameters, such as membrane curvature, tension, and composition, influence the budding and fission of transport intermediates. Endocytosis in living cells also appears to be regulated by the mechanical load experienced by the plasma membrane. In contrast, how these parameters affect intracellular membrane trafficking in living cells is not known. To address this question, we investigate here the impact of a mechanical stress on the organization of the Golgi complex and on the formation of transport intermediates from the Golgi complex. Results: Using confocal microscopy, we visualize the deformation of Rab6-positive Golgi membranes applied by an internalized microsphere trapped in optical tweezers and simultaneously measure the corresponding forces. Our results show that the force necessary to deform Golgi membranes drops when actin dynamics is altered and correlates with myosin II activity. We also show that the applied stress has a long-range effect on Golgi membranes, perturbs the dynamics of Golgi-associated actin, and induces a sharp decrease in the formation of Rab6-positive vesicles from the Golgi complex as well as tubulation of Golgi membranes. Conclusions: We suggest that acto-myosin contractility strongly contributes to the local rigidity of the Golgi complex and regulates the mechanics of the Golgi complex to control intracellular membrane trafficking.
机译:背景:体外研究表明,诸如膜曲率,张力和组成等物理参数会影响运输中间体的出芽和裂变。活细胞中的内吞作用似乎也受到质膜所承受的机械负荷的调节。相反,尚不清楚这些参数如何影响活细胞的细胞内膜运输。为了解决这个问题,我们在这里研究机械应力对高尔基体的组织以及高尔基体中运输中间体的形成的影响。结果:使用共聚焦显微镜,我们可以看到由镊子内陷的内在微球施加的Rab6阳性高尔基膜的变形,并同时测量相应的力。我们的结果表明,当肌动蛋白动力学改变并与肌球蛋白II活性相关时,使高尔基体膜变形所需的力下降。我们还表明,施加的应力对高尔基体膜具有长远影响,扰乱高尔基体相关肌动蛋白的动力学,并诱导高尔基体复合物Rab6阳性囊泡的形成以及高尔基体膜的导管形成过程中的急剧减少。 。结论:我们认为肌动蛋白-肌球蛋白的收缩力强烈促进了高尔基体的局部刚度,并调节了高尔基体的力学来控制细胞内膜的运输。

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