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Movement and Remodeling of the Endoplasmic Reticulum in Nondividing Cells of Tobacco Leaves

机译:烟草叶片非分裂细胞内质网的运动与重塑

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Using a novel analytical tool, this study investigates the relative roles of actin, microtubules, myosin, and Golgi bodies on form and movement of the endoplasmic reticulum (ER) in tobacco (Nicotiana tabacum) leaf epidermal cells. Expression of a subset of truncated class XI myosins, which interfere with the activity of native class XI myosins, and drug-induced actin depolymerization produce a more persistent network of ER tubules and larger persistent cisternae. The treatments differentially affect two persistent size classes of cortical ER cisternae, those >0.3 mu m(2) and those smaller, called punctae. The punctae are not Golgi, and ER remodeling occurs in the absence of Golgi bodies. The treatments diminish the mobile fraction of ER membrane proteins but not the diffusive flow of mobile membrane proteins. The results support a model whereby ER network remodeling is coupled to the directionality but not the magnitude of membrane surface flow, and the punctae are network nodes that act as foci of actin polymerization, regulating network remodeling through exploratory tubule growth and myosin-mediated shrinkage.
机译:使用新型分析工具,本研究调查了肌动蛋白,微管,肌球蛋白和高尔基体在烟草(烟草)叶表皮细胞内质网(ER)的形成和运动中的相对作用。截短的XI类肌球蛋白的一部分亚基的表达会干扰天然的XI类肌球蛋白的活性,药物诱导的肌动蛋白解聚作用会产生更持久的ER小管网络和更大的持久池。这些处理方法会分别影响两种持久性大小的皮质ER气罐,即> 0.3μm(2)和较小的类,称为点囊。点子不是高尔基体,并且在没有高尔基体的情况下发生ER重塑。这些处理减少了ER膜蛋白的可移动部分,但不会减少可移动膜蛋白的扩散流。结果支持一个模型,其中ER网络重塑与方向性而不是膜表面流量的大小相关,点状点是充当肌动蛋白聚合灶的网络节点,通过探索性小管生长和肌球蛋白介导的收缩来调节网络重塑。

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