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首页> 外文期刊>Biochemistry and Molecular Biology International >Dexamethasone induced expression of phosphatase inhibits generation ofreactive oxygen species in Ehrlich ascites tumor cells
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Dexamethasone induced expression of phosphatase inhibits generation ofreactive oxygen species in Ehrlich ascites tumor cells

机译:地塞米松诱导的磷酸酶表达抑制埃希氏腹水肿瘤细胞中活性氧的产生

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摘要

Both pre-activated and phorbol ester tetradecanoyl phorbol myristate acetate (TPA) activated reactive oxygen species (ROS) generation were inhibited by dexamethasone in vivo. Time kinetics on influence of dexamethasone on cytosolic phosphoprotein phosphatase activity revealed that, when compared to phosphatase activity in cytosol of control Ehrlich ascites tumor (EAT) cells, a 5-fold increase in specific activity is seen in the cytosol of EAT cells treated (in vivo, 0-90 min. 1 mg/kg body weight) with dexamethasone. Dexamethasone induced phosphatase was partially purified by conventional ion-exchange and gel filtration column chromatographic techniques. Purified phosphatase had a molecular weight of 70 KDa by SDS-PAGE. A dose-dependent inhibition of TPA activated ROS generation by partially purified phosphatase in permeabilized EAT cells suggested that dephosphorylation is a major regulatory mechanism in "switching off" of the respiratory burst. Anti-phosphatase antibodies were raised, purified and were used to quantitate cytosolic phosphatase by ELISA, which revealed that dexamethasone induces 6-fold increase in expression of phosphatase in EAT cells by 120 min. The expression of phosphatase in EAT cell cytosol was further confirmed by immunostaining using anti-phosphatase antibodies, the results of which showed intense blue staining on development with BCIP/NBT.
机译:地塞米松在体内抑制了预活化和佛波酸酯十四烷酰佛波肉豆蔻酸酯乙酸盐(TPA)活化的活性氧(ROS)的产生。时间动力学对地塞米松对胞质磷蛋白磷酸酶活性影响的影响揭示,与对照埃希氏腹水肿瘤(EAT)细胞的胞浆中的磷酸酶活性相比,在所治疗的EAT细胞的胞质中比活性增加了5倍(在在体内,0-90分钟(1 mg / kg体重)与地塞米松。地塞米松诱导的磷酸酶通过常规离子交换和凝胶过滤柱色谱技术部分纯化。通过SDS-PAGE,纯化的磷酸酶的分子量为70KDa。透化的EAT细胞中部分纯化的磷酸酶对TPA激活的ROS的剂量依赖性抑制表明,去磷酸化是“关闭”呼吸爆发的主要调节机制。产生,纯化抗磷酸酶抗体,并用于通过ELISA定量胞浆磷酸酶,这表明地塞米松可在EAT细胞中诱导120分钟磷酸酶表达增加6倍。通过使用抗磷酸酶抗体进行免疫染色,进一步证实了EAT细胞质中磷酸酶的表达,其结果显示在用BCIP / NBT显影时会出现强烈的蓝色染色。

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