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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Reversible protein phosphorylation regulates the dynamic organization of the pollen tube cytoskeleton: effects of calyculin A and okadaic acid
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Reversible protein phosphorylation regulates the dynamic organization of the pollen tube cytoskeleton: effects of calyculin A and okadaic acid

机译:可逆的蛋白质磷酸化调节花粉管细胞骨架的动态组织:钙霉素A和冈田酸的作用

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We investigated the cytoskeleton of Lilium longiflorum pollen tubes and examined the effects of the type 2A protein phosphatase (PP2A) inhibitors calyculin A and okadaic acid. An improved method for actin visualization, the simultaneous fixation and staining with rhodamine-labelled phalloidin during microscopical observation, revealed abundant actin filaments of no preferential orientation in the apical clear zone. Microtubules, visualized by indirect immunofluorescence, were mostly absent from the apices of straight-growing pollen tubes but present in those with irregular shape. Double labelling showed that both actin bundles and microtubules had a similar longitudinal or slightly helical orientation in the pollen tube shaft. In the presence of 30 nM calyculin A or okadaic acid, pollen tubes grew very slowly, branched frequently, and contained isolated, randomly oriented, curved actin bundles and microtubules. Treating pollen tubes with calyculin A or okadaic acid after germination arrested growth immediately, reversibly altered the alignment of actin bundles from axial to transverse, and disassembled microtubules. The changes in actin organization caused by the PP2A inhibitors were similar to those observed upon overexpression of AtRopl (Y. Fu, G. Wu, Z. Yang, Journal of Cell Biology 152: 1019-1032, 2001), suggesting that hyperphosphorylation interferes with the signalling pathway of small GTPases. The effects of the PP2A inhibitors could be ameliorated with nanomolar concentrations of latrunculin B. [References: 88]
机译:我们调查了百合花粉花粉管的细胞骨架,并检查了2A型蛋白磷酸酶(PP2A)抑制剂calyculin A和冈田酸的作用。一种改进的肌动蛋白可视化方法,在显微镜观察过程中同时用若丹明标记的鬼笔环肽固定和染色,发现在根尖透明区有大量不优先取向的肌动蛋白丝。通过间接免疫荧光观察的微管大多不存在于直生花粉管的顶端,但以不规则形状存在。双重标记显示,肌动蛋白束和微管在花粉管轴上都具有相似的纵向或微螺旋方向。在存在30 nM的钙霉素A或冈田酸的情况下,花粉管生长非常缓慢,经常分支,并包含孤立的,随机定向的弯曲肌动蛋白束和微管。发芽后,用钙霉素A或冈田酸处理花粉管会立即阻止生长,可逆地改变肌动蛋白束的排列方式,从轴向到横向,并拆解微管。由PP2A抑制剂引起的肌动蛋白组织变化与AtRopl过表达时观察到的变化相似(Y. Fu,G.Wu,Z.Yang,Journal of Cell Biology 152:1019-1032,2001),这表明高磷酸化会干扰小GTP酶的信号通路。纳摩尔浓度的latrunculin B可以改善PP2A抑制剂的作用。[参考文献:88]

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