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生物活性代谢物优洛托品C对单细胞真核生物草履虫吞噬作用和液相内吞作用的影响。

Effect of the bioactive metabolite euplotin C on phagocytosis and fluid-phase endocytosis in the single-celled eukaryote Paramecium.

作者信息

Ramoino Paola, Usai Cesare, Maccione Silvia, Beltrame Francesco, Diaspro Alberto, Fato Marco, Guella Graziano, Dini Fernando

机构信息

Dipartimento per lo Studio del Territorio e delle sue Risorse (DIP.TE.RIS.), Università di Genova, Corso Europa 26, I-16132, Genova, Italy.

出版信息

Aquat Toxicol. 2007 Nov 15;85(1):67-75. doi: 10.1016/j.aquatox.2007.08.001. Epub 2007 Aug 12.

Abstract

The effect of euplotin C -- a lipophilic bioactive metabolite produced by the ciliate Euplotes crassus -- on the kinetics of both phagocytosis of latex particles and fluid-phase uptake of dextran, was studied in the single-cell ciliate Paramecium primaurelia. The inhibition of food vacuole formation was concentration- and time-dependent (p<0.001), even if euplotin C did not completely block the phagocytosis. Following a 15 min treatment with a euplotin C (0.5 microg/ml), the latex particle uptake was inhibited up to 25%. Furthermore, the pretreatment of cells with taxol strongly counteracted euplotin C effect. The amount of extracellularly provided dextran, which is internalized exclusively by fluid-phase uptake, was quantified in cells whose phagocytic activity was blocked by trifluoperazine. The amount of the internalized dextran was about 50% of that in controls after 15 min incubation in the presence of euplotin C. Fluorescence confocal images showed that no endosomes were formed on the surface of these cells. The effect of euplotin C on the food vacuole formation and fluid-phase endocytosis is apparently mediated by a modification of microtubule network.

摘要

在单细胞纤毛虫双小核草履虫中,研究了嗜热栖热放线菌产生的亲脂性生物活性代谢产物优波菌素C对乳胶颗粒吞噬动力学和葡聚糖液相摄取的影响。食物泡形成的抑制呈浓度和时间依赖性(p<0.001),即使优波菌素C没有完全阻断吞噬作用。用优波菌素C(0.5微克/毫升)处理15分钟后,乳胶颗粒摄取被抑制高达25%。此外,用紫杉醇对细胞进行预处理可强烈抵消优波菌素C的作用。在吞噬活性被三氟拉嗪阻断的细胞中,对仅通过液相摄取内化的细胞外提供的葡聚糖量进行了定量。在优波菌素C存在下孵育15分钟后,内化的葡聚糖量约为对照的50%。荧光共聚焦图像显示这些细胞表面未形成内体。优波菌素C对食物泡形成和液相内吞作用的影响显然是由微管网络的改变介导的。

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