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首页> 外文期刊>Chemical research in toxicology >Multidrug Resistance Protein 4 (MRP4/ABCC4) Protects Cells from the Toxic Effects of Halobenzoquinones
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Multidrug Resistance Protein 4 (MRP4/ABCC4) Protects Cells from the Toxic Effects of Halobenzoquinones

机译:多药抗性蛋白4(MRP4 / ABCC4)保护细胞免受氟苯基醌的毒性作用

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摘要

Halobenzoquinones (HBQs) are frequently detected disinfection byproducts (DBPs) in treated water. Recent studies have demonstrated that HBQs are highly cytotoxic and capable of inducing the generation of reactive oxygen species (ROS) and depleting cellular glutathione (GSH). Multidrug resistance proteins (MRPs/ABCCs) are known to play a critical role in the elimination of numerous drugs, carcinogens, toxicants, and their conjugated metabolites. In general, little is known about the roles of transporters in DBP toxicity. Here, we hypothesize that MRPs may play roles in the detoxication of HBQs. To test this hypothesis, we used human embryonic kidney 293 (HEK293) cells stably expressing MRPs (MRP1, 3, 4, and 5) and HEK293 cells with empty vector (HEK-V) to examine the comparative cytotoxicity of four HBQs: 2,6-dichloro-1,4-benzoquinone (2,6-DCBQ), 2,6-dibromo-1,4-benzoquinone (2,6-DBBQ), 2,6-dichloro-3-methyl-1,4-benzoquinone (DCMBQ), and 2,3,6-trichloro-1,4-benzoquinone (TriCBQ). The cytotoxicity (IC 50 ) of the four HBQs in HEK-MRP1, -MRP3, -MRP4, and -MRP5 cells and the control HEK-V cells clearly showed that MRP4 had the most significant effect on reducing the toxicity of the four HBQs. To further support MRP4-mediated detoxication of HBQs, we examined the HBQ-induced ROS levels in HEK-MRP4 and HEK-V cells. ROS levels were significantly reduced in HEK-MRP4 cells compared with HEK-V cells after HBQ treatment. Furthermore, it was found that MRP4-mediated detoxication of the HBQs was GSH dependent, as the cytotoxicity of the HBQs was increased in GSH-depleted HEK-MRP4 cells in comparison to HEK-MRP4 cells. The GSH-dependent protection of cells from HBQs supports the possibility of HBQ–GSH conjugate efflux by MRP4. This study demonstrates a role for MRP4 in cellular protection against HBQ DBP-induced toxicity and oxidative stress.
机译:卤代苯基醌(HBQ)经常检测到处理水中的消毒副产品(DBPS)。最近的研究表明,HBQS是高度细胞毒性的,并且能够诱导产生反应性氧物质(ROS)和耗尽细胞谷胱甘肽(GSH)的产生。已知多药抗性蛋白(MRPS / ABCC)在消除许多药物,致癌物,毒物和它们的共轭代谢物中起着关键作用。通常,关于运输器在DBP毒性中的作用很少。在这里,我们假设MRP可能会在HBQ的解毒中发挥作用。为了测试这一假设,我们使用稳定表达MRP(MRP1,3,4和5)和HEK293细胞的人胚胎肾293(HEK293)细胞,用空载体(HEK-V)检查四个HBQS的比较细胞毒性:2, 6-二氯-1,4-苯并醌(2,6-DCBQ),2,6-二溴-1,4-苯醌(2,6-DBBQ),2,6-二氯-3-甲基-1,4-苯醌(DCMBQ)和2,3,6-三氯-1,4-苯并醌(TRICBQ)。 HEK-MRP1,-MRP3,-MRP4和-MRP5细胞中的四个HBQS的细胞毒性(IC 50)和对照HERP5细胞清楚地表明MRP4对降低四HBQ的毒性具有最显着的影响。为了进一步支持MRP4介导的HBQ的解毒,我们检查了HEK-MRP4和HEK-V细胞中的HBQ诱导的ROS水平。 HEK-MRP4细胞中ROS水平与HBQ治疗后的HEK-V细胞相比显着降低。此外,发现MRP4介导的HBQs的解毒是GSH依赖性的,因为与HEK-MRP4细胞相比,HBQS的细胞毒性增加了GSH耗尽的HEK-MRP4细胞。来自HBQs的细胞的GSH依赖性保护支持MRP4的HBQ-GSH共轭杂交的可能性。该研究表明MRP4在细胞保护中对HBQ DBP诱导的毒性和氧化应激的作用。

著录项

  • 来源
    《Chemical research in toxicology 》 |2017年第10期| 共8页
  • 作者单位

    Division of Analytical and Environmental Toxicology Department of Laboratory Medicine and;

    Division of Analytical and Environmental Toxicology Department of Laboratory Medicine and;

    Division of Analytical and Environmental Toxicology Department of Laboratory Medicine and;

    Division of Analytical and Environmental Toxicology Department of Laboratory Medicine and;

    Division of Analytical and Environmental Toxicology Department of Laboratory Medicine and;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 毒物学(毒理学) ;
  • 关键词

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