首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Toxicity, membrane binding and uptake of the Sclerotinia sclerotiorum agglutinin (SSA) in different insect cell lines
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Toxicity, membrane binding and uptake of the Sclerotinia sclerotiorum agglutinin (SSA) in different insect cell lines

机译:不同昆虫细胞系中Sclerotinia sclerotiorum inglutinin(SSA)的毒性,膜结合和摄取

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The fungal lectin purified from Sclerotinia sclerotiorum, further referred to as Sclerotinia sclerotiorum agglutinin or SSA, possesses insecticidal activity against important pest insects such as pea aphids (Acyrthosiphon pisum). This paper aims at a better understanding of its activity at cellular level. Therefore, different insect cell lines were treated with SSA. These cell lines were derived from different tissues and represent the three major orders of insects important in agriculture: CF-203 (midgut Choristoneura fumiferana, Lepidoptera), GUTAW1 (midgut, Helicoverpa zea, Lepidoptera), High5 cells (ovary, Trichoplusia ni, Lepidoptera), Sf9 (ovary cells from Spodoptera frugiperda, Lepidoptera), S2 (hemocyte, Drosophila melanogaster, Diptera), and TcA (whole body, Tribolium castaneum, Coleoptera). Although the sensitivity to SSA differs between the cell lines, SSA clearly showed toxicity in all six cell lines with median effect concentrations (EC50) ranging between 9 and 42 mu g/ml. An in-depth analysis of the mechanism of uptake in the cells revealed superior amounts of FITC-SSA at the membrane of CF-203 cells compared to Sf9 cells, while a similar small amount of SSA was internalized in both cell lines. Pre-incubation with the clathrin-mediated endocytosis inhibitor phenylarsine oxide inhibited the internalization of SSA into the CF-203 and Sf9 cells with a respective reduction of 6- and 1.7-fold. The data are discussed in relation to the importance of cellular uptake mechanism for SSA binding and cytotoxicity.
机译:从Sclerotinia Sclerotiorum纯化的真菌凝集素,进一步称为Sclerotinia sclerotiorum inglutinin或SSA,对豌豆蚜虫等重要害虫(Acyrthosiphon Pisum)具有杀虫活性。本文旨在更好地了解其在细胞水平的活动。因此,用SSA处理不同的昆虫细胞系。这些细胞系来自不同的组织,代表了农业中重要的三个主要昆虫秩序:CF-203(中肠Chorrestoneura Fumiferana,Lepidoptera),Gutaw1(中肠,Helicoverpa,Lepidoptera),高5个细胞(卵巢,卵巢,Trichoplusia Ni,Lepidoptera ),SF9(来自Spodoptera Frugiperda,鳞翅目),S2(血细胞,果蝇,Diptera)和TCA(全身,肮脏的Castaneum,鞘翅目)的SF9。尽管对SSA之间的敏感性在细胞系之间不同,但SSA在所有六种细胞系中清楚地显示出含有9-42μg/ ml的中值浓度(EC50)的所有六种细胞系中的毒性。与SF9细胞相比,对细胞中摄取机制的深度分析显示CF-203细胞膜的优异量的FITC-SSA,而在两种细胞系中,相似的少量SSA内化。与Clathrin介导的内吞作用抑制剂苯甲酸宁氧化物预孵育抑制SSA的内化进入CF-203和SF9细胞,其相应减少6-10倍。关于SSA结合和细胞毒性细胞摄取机制的重要性讨论了数据。

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