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ε毒素-绿色荧光蛋白对体内MDCK细胞和肾小管的影响。

Effect of epsilon toxin-GFP on MDCK cells and renal tubules in vivo.

作者信息

Soler-Jover Alex, Blasi Juan, Gómez de Aranda Inma, Navarro Piedad, Gibert Maryse, Popoff Michel R, Martín-Satué Mireia

机构信息

Department de Biologia Cellular i Anatomia Patològica, Universitat de Barcelona, L'Hospitalet de Llobregat, Barcelona, Spain.

出版信息

J Histochem Cytochem. 2004 Jul;52(7):931-42. doi: 10.1369/jhc.4A6254.2004.

Abstract

Epsilon toxin (epsilon-toxin), produced by Clostridium perfringens types B and D, causes fatal enterotoxemia, also known as pulpy kidney disease, in livestock. Recombinant epsilon-toxin-green fluorescence protein (epsilon-toxin-GFP) and epsilon-prototoxin-GFP were successfully expressed in Escherichia coli. MTT assays on MDCK cells confirmed that recombinant epsilon-toxin-GFP retained the cytotoxicity of the native toxin. Direct fluorescence analysis of MDCK cells revealed a homogeneous peripheral pattern that was temperature sensitive and susceptible to detergent. epsilon-Toxin-GFP and epsilon-prototoxin-GFP bound to endothelia in various organs of injected mice, especially the brain. However, fluorescence mainly accumulated in kidneys. Mice injected with epsilon-toxin-GFP showed severe kidney alterations, including hemorrhagic medullae and selective degeneration of distal tubules. Moreover, experiments on kidney cryoslices demonstrated specific binding to distal tubule cells of a range of species. We demonstrate with new recombinant fluorescence tools that epsilon-toxin binds in vivo to endothelial cells and renal tubules, where it has a strong cytotoxic effect. Our binding experiments indicate that an epsilon-toxin receptor is expressed on renal distal tubules of mammalian species, including human.

摘要

由B型和D型产气荚膜梭菌产生的ε毒素可导致家畜发生致命性肠毒血症,也称为软肾病。重组ε毒素-绿色荧光蛋白(ε毒素-GFP)和ε原毒素-GFP在大肠杆菌中成功表达。对MDCK细胞进行的MTT分析证实,重组ε毒素-GFP保留了天然毒素的细胞毒性。对MDCK细胞进行的直接荧光分析显示出一种均匀的周边模式,该模式对温度敏感且易受去污剂影响。ε毒素-GFP和ε原毒素-GFP与注射小鼠各个器官中的内皮细胞结合,尤其是大脑中的内皮细胞。然而,荧光主要积聚在肾脏中。注射了ε毒素-GFP的小鼠出现严重的肾脏病变,包括出血性髓质和远端肾小管的选择性变性。此外,对肾脏冷冻切片的实验证明其与一系列物种的远端肾小管细胞有特异性结合。我们使用新的重组荧光工具证明,ε毒素在体内与内皮细胞和肾小管结合,在那里它具有很强的细胞毒性作用。我们的结合实验表明,ε毒素受体在包括人类在内的哺乳动物物种的肾远端小管上表达。

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