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首页> 外文期刊>Toxicology and Applied Pharmacology >The aryl hydrocarbon receptor interacts with ATP5alpha1, a subunit of the ATP synthase complex, and modulates mitochondrial function.
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The aryl hydrocarbon receptor interacts with ATP5alpha1, a subunit of the ATP synthase complex, and modulates mitochondrial function.

机译:芳基烃受体与ATP合酶复合物的一个亚基ATP5alpha1相互作用,并调节线粒体功能。

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摘要

Dioxins, including 2,3,7,8 tetrachlorodibenzo-p-dioxin (TCDD), produce a wide range of toxic effects in mammals. Most, if not all, of these toxic effects are regulated by the aryl hydrocarbon receptor (AHR). The AHR is a ligand activated transcription factor that has been shown to interact with numerous proteins capable of influencing the receptor's function. The ability of secondary proteins to alter AHR-mediated transcriptional events, a necessary step for toxicity, led us to determine whether additional interacting proteins could be identified. To this end, we have employed tandem affinity purification (TAP) of the AHR in Hepa1c1c7 cells. TAP of the AHR, followed by mass spectrometry (MS) identified ATP5alpha1, a subunit of the ATP synthase complex, as a strong AHR interactor in the absence of ligand. The interaction was lost upon exposure to TCDD. The association was confirmed by co-immunoprecipitation in multiple cell lines. In addition, cell fractionation experiments showed that a fraction of the AHR is found in the mitochondria. To ascribe a potential functional role to the AHR:ATP5alpha1 interaction, TCDD was shown to induce a hyperpolarization of the mitochondrial membrane in an AHR-dependent and transcription-independent manner. These results suggest that a fraction of the total cellular AHR pool is localized to the mitochondria and contributes to the organelle's homeostasis.
机译:二恶英,包括2,3,7,8四氯二苯并-对二恶英(TCDD),在哺乳动物中产生广泛的毒性作用。这些毒性作用中的大多数(如果不是全部)都受到芳烃受体(AHR)的调节。 AHR是一种配体激活的转录因子,已显示与多种能够影响受体功能的蛋白质相互作用。次级蛋白质改变AHR介导的转录事件的能力(毒性的必要步骤)使我们确定是否可以鉴定其他相互作用的蛋白质。为此,我们在Hepa1c1c7细胞中采用了AHR的串联亲和纯化(TAP)。 TAP的AHR,然后进行质谱分析(MS),将ATP合酶复合物的一个亚基ATP5alpha1识别为不存在配体的强AHR相互作用体。接触TCDD后失去了相互作用。通过多种细胞系中的免疫共沉淀证实了这种关联。另外,细胞分级分离实验表明在线粒体中发现了一部分AHR。为了将潜在的功能作用归因于AHR:ATP5alpha1相互作用,已显示TCDD以AHR依赖和转录独立的方式诱导线粒体膜超极化。这些结果表明,总的细胞AHR库的一部分位于线粒体中,并且有助于细胞器的体内平衡。

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