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Role of intracellular defense factors against methylmercury toxicity

机译:细胞内防御因子对甲基汞毒性的作用

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Methylmercury (MeHg) is a causative agent of Minamata disease and an environmental pollutant that comprises a large portion of organically occurring mercury. Many aspects of the biological defense mechanisms against MeHg toxicity remain unclear. Recently, nuclear factor-E2-related factor 2 (Nrf2), heat shock factor protein 1 (Hsf1), and hydrogen sulfide were identified as intracellular defense factors against MeHg toxicity. These findings suggest that novel biological defense mechanisms against MeHg toxicity exist in the living organism. In addition, the expression of downstream genes that mediate activation of the transcription factors Nrf2 and Hsf1 was markedly induced by MeHg treatment, suggesting that this action is involved in the reduction of MeHg toxicity. On the other hand, when the gaseous form of hydrogen sulfide (H _2S) binds directly to MeHg, bismethylmercury sulfide (MeHg-S-HgMe) as a low toxicity metabolite is formed. This suggests the involvement of the gaseous form of H _2S in the reduction of MeHg toxicity. In this topic, we summarize the roles of factors involved in novel biological defense mechanisms against MeHg toxicity.
机译:甲基汞(MeHg)是水am病的病原体,是一种环境污染物,其中包含大部分有机汞。抵抗MeHg毒性的生物防御机制的许多方面仍然不清楚。最近,核因子-E2相关因子2(Nrf2),热休克因子蛋白1(Hsf1)和硫化氢被确定为针对MeHg毒性的细胞内防御因子。这些发现表明,在活生物体中存在针对MeHg毒性的新型生物防御机制。此外,MeHg处理显着诱导了介导转录因子Nrf2和Hsf1激活的下游基因的表达,表明该作用与降低MeHg毒性有关。另一方面,当硫化氢(H _2S)的气态直接与MeHg结合时,会形成低毒代谢产物双甲基汞硫化物(MeHg-S-HgMe)。这表明H _2 S的气态形式参与了MeHg毒性的降低。在本主题中,我们总结了针对MeHg毒性的新型生物防御机制中涉及的因素的作用。

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