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The activation mechanism of the aryl hydrocarbon receptor (AhR) by molecular chaperone HSP90

机译:分子伴侣HSP90激活芳烃受体(AhR)的机理

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The aryl hydrocarbon receptor is a member of the nuclear receptor superfamily that associates with the molecular chaperone HSP90 in the cytoplasm. The activation mechanism of the AhR is not yet fully understood. It has been proposed that after binding of ligands such as 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD), 3methylcholanthrene (3-MC), or @b-naphthoflavone (@b-NF), the AhR dissociates from HSP90 and translocates to the nucleus. It has also been hypothesized that the AhR translocates to the nucleus and forms a complex with HSP90 and other co-chaperones. There are a few reports about the direct association or dissociation of AhR and HSP90 due to difficulties in purifying AhR. We constructed and purified the PAS domain from AhR. Binding of the AhR-PAS domain to @b-NF affinity resin suggested that it possesses ligand-binding affinity. We demonstrated that the AhR-PAS domain binds to HSP90 and the association is not affected by ligand binding. The ligand 17-DMAG inhibited binding of HSP90 to GST-PAS. In an immunoprecipitation assay, HSP90 was co-immunoprecipitated with AhR both in the presence or absence of ligand. Endogenous AhR decreased in the cytoplasm and increased in the nucleus of HeLa cells 15min after treatment with ligand. These results suggested that the ligand-bound AhR is translocated to nucleus while in complex with HSP90. We used an in situ proximity ligation assay to confirm whether AhR was translocated to the nucleus alone or together with HSP90. HSP90 was co-localized with AhR after the nuclear translocation. It has been suggested that the ligand-bound AhR was translocated to the nucleus with HSP90. Activated AhR acts as a transcription factor, as shown by the transcription induction of the gene CYP1A1 8h after treatment with @b-NF.
机译:芳基烃受体是核受体超家族的成员,其与细胞质中的分子伴侣HSP90缔合。 AhR的激活机制尚未完全了解。已经提出,在配体如2,3,7,8-四氯二苯并-对-二恶英(TCDD),3-甲基胆固醇(3-MC)或@ b-萘黄酮(@ b-NF)结合后,AhR解离从HSP90转移到细胞核。还假设AhR易位至核并与HSP90和其他伴侣蛋白形成复合物。由于纯化AhR的困难,有一些关于AhR和HSP90直接缔合或解离的报道。我们从AhR构建并纯化了PAS域。 AhR-PAS域与@ b-NF亲和树脂的结合表明它具有配体结合亲和力。我们证明,AhR-PAS域与HSP90结合,并且该结合不受配体结合的影响。配体17-DMAG抑制HSP90与GST-PAS的结合。在免疫沉淀测定中,在存在或不存在配体的情况下,将HSP90与AhR共免疫沉淀。配体处理后15min,内源性AhR在细胞质中减少,在HeLa细胞核中增加。这些结果表明,与HSP90复合时,结合配体的AhR易位至核。我们使用原位邻近结扎测定法来确定AhR是否单独或与HSP90一起易位到核中。核易位后,HSP90与AhR共定位。已经提出,与配体结合的AhR通过HSP90易位至核。活化的AhR充当转录因子,如用@ b-NF处理后CYP1A1基因的转录诱导所示。

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