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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >A CYTOCHALASIN-SENSITIVE ACTIN FILAMENT MESHWORK IS A PREREQUISITE FOR LOCAL WOUND WALL DEPOSITION IN NITELLA INTERNODAL CELLS
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A CYTOCHALASIN-SENSITIVE ACTIN FILAMENT MESHWORK IS A PREREQUISITE FOR LOCAL WOUND WALL DEPOSITION IN NITELLA INTERNODAL CELLS

机译:细胞松弛素敏感的肌动蛋白丝机制是在NITELLA结节细胞中局部创壁沉积的先决条件

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摘要

Reorganization of the actin cytoskeleton following cell wall puncturing of characean internodal cells was studied by immunofluorescence and confocal laser scanning microscopy. Injury locally destroyed the parallel subcortical actin filament bundles and cortical actin strands that are characteristic of unwounded regions. At wounds, a delicate three-dimensional interlaced structure of actin strands, with meshes up to 5 mu m wide, formed by de novo assembly of isolated filaments and by the elongation of residual subcortical actin bundles and cortical actin strands. The actin meshwork persist ed for up to 2 h, corresponding to the duration of intense wound wall secretion. Actin filament bundles continuous with the subcortical bundles outside the wound then regenerated, their parallel alignment probably assisted by endoplasmic flow. Cytochalasin D concentrations that arrested cytoplasmic streaming completely inhibited the formation of the actin meshwork, wound wall deposition and recovery of actin bundles. Concentrations that only reduced streaming velocity delayed meshwork formation and wound walls were thinner than ill controls. The actual amount of F-actin within the meshwork, however, was clearly greater in the presence of low cytochalasin concentrations. In late stages of recovery, the actin bundles became very thick and intervening spaces became wider thereby forming a conspicuous, three-dimensional lattice that was continuous with interwebbing subcortical bundles and cortical actin around the periphery of the wound. Our experiments suggest that actin meshwork formation is a prerequisite for plasma membrane-directed transport of vesicles involved in wounding-induced exocytosis in characean internodes. Stabilization of the meshwork by subinhibitory concentrations of cytochalasin D is probably caused by actin-binding properties of the drug that either induce bundling or impede function of associated proteins. [References: 46]
机译:通过免疫荧光和共聚焦激光扫描显微镜研究了characean节间细胞的细胞壁穿刺后肌动蛋白细胞骨架的重组。损伤会局部破坏平行的皮质下肌动蛋白丝束和皮质肌动蛋白链,这是未受伤区域的特征。在伤口处,肌动蛋白链的精细三维交织结构,网眼宽达5微米,是由分离的细丝的从头组装以及残余皮质下肌动蛋白束和皮质肌动蛋白链的伸长形成的。肌动蛋白网可持续长达2小时,这与伤口壁强烈分泌的持续时间相对应。肌动蛋白丝束与创面外的皮层下束连续,然后再生,其平行排列可能受内质流辅助。阻止细胞质流的细胞松弛素D浓度完全抑制肌动蛋白网的形成,伤口壁沉积和肌动蛋白束的恢复。仅降低流动速度的浓度会使网状结构的形成和伤口壁的厚度比不良对照组薄。然而,在细胞松弛素浓度低的情况下,网状结构中F-肌动蛋白的实际含量明显更高。在恢复的后期,肌动蛋白束变得非常厚,介入空间变得更宽,从而形成一个明显的三维晶格,该晶格连续地围绕着伤口周围的皮层下皮质束和皮质肌动蛋白。我们的实验表明肌动蛋白网的形成是质膜定向运输囊泡中牵涉炭疽节间中诱导的胞吐作用的囊泡的先决条件。通过亚抑制浓度的细胞松弛素D来稳定网状结构可能是由药物的肌动蛋白结合特性引起的,该特性诱导捆绑或阻碍相关蛋白的功能。 [参考:46]

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