首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Growth inhibition and changes in morphology and actin distribution in Acetabularia acetabulum by phalloidin and phalloidin derivatives
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Growth inhibition and changes in morphology and actin distribution in Acetabularia acetabulum by phalloidin and phalloidin derivatives

机译:鬼笔环肽和鬼笔环肽衍生物的生长抑制及其在髋臼中的形态和肌动蛋白分布变化

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摘要

Effects on morphology and microfilament structure caused by phalloidin, phallacidin, and some semisynthetic phalloidin derivatives were studied in vegetative cells of the green alga Acetabularia acetabulum (L.) Silva. All phalloidin derivatives (except for phalloidin itself) caused growth stop of the alga after 1 day and (except for the fluorescein-labeled phalloidin) death of the cells after 4-7 days. Hair whorl tip growth and morphology as screened by light microscopy, as well as microfilament structure in tips, suggested that growth stop is correlated with a disorganization of actin filaments similar to that recently described for jasplakinolide (H. Sawitzky, S. Liebe, J. Willingale-Theune, D. Menzel, European Journal of Cell Biology 78:424-433,1999). Using rabbit muscle actin as a model target protein, we found that the toxic effects in vivo did not correlate with actin affinity values, suggesting that permeation through membranes must play a role. Indeed, the most lipophilic phalloidin derivatives benzoylphalloidin and dithiolanophalloidin were the most active in causing growth stop at ca. 100 muM. In comparison to the concentration of jasplakinolide required to cause similar effects (<3 muM), the two most active phalloidin derivatives exhibited an activity ca. 30 times lower. Nonetheless, lipophilic phalloidin derivatives can be used in algae, and probably also other cells, to modulate actin dynamics in vivo. In addition, we found that the fluorescent fluorescein isothiocyanate-phalloidin is able to enter living algal cells and stains actin structures brightly. Since it does not suppress actin dynamics, we suggest fluorescein isothiocyanate-phalloidin as a tool for studying rearrangements of actin structures in live cells, e.g., by confocal laser scanning microscopy. [References: 36]
机译:研究了鬼笔环肽,鬼笔环肽和一些半合成鬼笔环肽衍生物对形态和微丝结构的影响。所有的鬼笔环肽衍生物(除了鬼笔环肽本身)都会导致藻类在1天后停止生长,并且(除了荧光素标记的鬼笔环肽外)会在4-7天后导致细胞死亡。光学显微镜筛选的头发螺纹尖端生长和形态以及尖端中的微丝结构表明,生长停止与肌动蛋白丝的解离有关,类似于最近描述的茉莉素(H.Sawitzky,S.Liebe,J。 Willingale-Theune,D.Menzel,欧洲细胞生物学杂志78:424-433,1999)。使用兔肌肌动蛋白作为模型靶蛋白,我们发现体内的毒性作用与肌动蛋白亲和力值不相关,表明通过膜的渗透必须发挥作用。确实,最具亲脂性的鬼笔环肽衍生物苯甲酰鬼笔环肽和二硫代羊毛脂球菌素在引起生长停止时最活跃。 100毫米与引起类似作用所需的茉莉素醇内酯的浓度(<3μM)相比,两种活性最高的鬼笔环肽衍生物的活性约为。低30倍。尽管如此,亲脂性鬼笔环肽衍生物仍可用于藻类,可能还用于其他细胞,以调节体内肌动蛋白的动力学。另外,我们发现荧光异硫氰酸荧光素-鬼笔环肽能够进入活的藻类细胞,并能使肌动蛋白结构明亮地染色。由于它不抑制肌动蛋白的动力学,我们建议使用荧光素异硫氰酸酯-鬼笔环肽作为研究活细胞中肌动蛋白结构重排的工具,例如通过共聚焦激光扫描显微镜观察。 [参考:36]

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