首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >CAFFEINE INHIBITION OF CYTOKINESIS - EFFECT ON THE PHRAGMOPLAST CYTOSKELETON IN LIVING TRADESCANTIA STAMEN HAIR CELLS
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CAFFEINE INHIBITION OF CYTOKINESIS - EFFECT ON THE PHRAGMOPLAST CYTOSKELETON IN LIVING TRADESCANTIA STAMEN HAIR CELLS

机译:咖啡因抑制细胞分裂作用-对存活的桔梗雄蕊细胞中成釉细胞骨架的影响

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摘要

The distribution of microtubules and actin microfilaments during caffeine-induced inhibition of cell plate formation has been studied in living Tradescantia stamen hair cells. Previous studies have shown that caffeine allows cell plate initiation but prevents its completion, resulting in binucleate cells. In the present study, confocal microscopy of cells microinjected with fluorescent brain tubulin or phalloidin, and cultured in the presence 5 mM caffeine, revealed that the initiation and early lateral expansion phase of the phragmoplast occur normally. However, caffeine completely inhibits the formation of the cytoskeletal torus which occurs in untreated cells during the late stages of cell plate and phragmoplast expansion. Caffeine further causes the disintegration of the incomplete cell plate. The results allow us to distinguish two phases in cell plate and phragmoplast growth: the initiation and early expansion phase, which is not affected by caffeine, and the late lateral expansion phase, which is completely inhibited in the presence of caffeine. Also in this study, the use of a high phalloidin concentration has revealed structural detail about the actin microfilaments involved in cell plate formation: microfilaments are observed that link the expanding edge of the phragmoplast with the cortical division site. In addition, cortical actin patches are observed within the actin depleted zone that might play a role in guidance of phragmoplast and cell plate expansion. [References: 45]
机译:咖啡因引起的雄蕊雄蕊毛细胞中,咖啡因诱导的细胞板形成抑制过程中微管和肌动蛋白微丝的分布已得到研究。先前的研究表明,咖啡因允许细胞板启动,但阻止其完成,从而产生双核细胞。在本研究中,共聚焦显微镜观察了显微注射荧光脑微管蛋白或鬼笔环肽并在5 mM咖啡因存在下进行培养的细胞,结果表明,睑板膜细胞的起始和早期侧向扩张阶段正常发生。然而,咖啡因完全抑制了在细胞板和原生质膜膨胀后期未处理的细胞中发生的细胞骨架圆环的形成。咖啡因进一步引起不完整细胞板的崩解。结果使我们能够区分细胞板和葡萄膜生长的两个阶段:不受咖啡因影响的起始阶段和早期扩张阶段,以及在咖啡因的存在下被完全抑制的后期横向扩张阶段。同样在这项研究中,使用高浓度的鬼笔环肽揭示了参与细胞板形成的肌动蛋白微丝的结构细节:观察到微丝将睑板膜的扩张边缘与皮层分裂位点相连。另外,在肌动蛋白耗尽区中观察到皮质肌动蛋白斑块,其可能在引导睑板和细胞板扩张中起作用。 [参考:45]

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