首页> 外文期刊>Chemico-biological interactions >Ligand-dependent and -independent degradation of the human aryl hydrocarbon receptor (hAHR) in cell culture models.
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Ligand-dependent and -independent degradation of the human aryl hydrocarbon receptor (hAHR) in cell culture models.

机译:细胞培养模型中人芳基烃受体(hAHR)的配体依赖性和非依赖性降解。

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摘要

Studies have shown that zebrafish and rodent aryl hydrocarbon receptors (AHRs) are degraded following ligand exposure and that reductions in AHR protein can impact growth and development in vivo. The current study was designed to evaluate the degradation of the AHR in seven human cell lines that were derived from various carcinomas or from normal tissue. Consistent with studies in other species, the results show that the human AHR (hAHR) is degraded in a ligand dependent manner following exposure to 2,3,7,8-tetrachlorodibenzo-p-dioxin for up to 16h. However, the hAHRs expressed in the various cell lines show differences in the time course and magnitude of degradation. The ligand dependent degradation is completely blocked by treatment with the proteasome inhibitor, MG-132. Ligand-independent degradation of the hAHR following exposure to geldanamycin (GA) is also observed in the different cell lines, although the magnitude of hAHR degradation is also is variable. These findings are significant since they indicate that ligand-dependent and independent degradation of the AHR is a conserved aspect of this signal transduction cascade from fish to human. In addition, the study identifies several cell lines that may provide novel models to further assess the regulation of AHR-mediated signaling and degradation of the human AHR.
机译:研究表明,斑马鱼和啮齿动物的芳基碳氢化合物受体(AHRs)在配体暴露后会降解,AHR蛋白的降低会影响体内的生长发育。当前的研究旨在评估源自多种癌症或正常组织的七种人类细胞系中AHR的降解。与其他物种的研究一致,结果表明,人类AHR(hAHR)在暴露于2,3,7,8-四氯二苯并-p-二恶英长达16h后,以配体依赖性方式降解。但是,在各种细胞系中表达的hAHRs在时间过程和降解程度上都存在差异。通过用蛋白酶体抑制剂MG-132处理完全阻断了配体依赖性降解。在hAHR暴露于格尔德霉素(GA)后,与配体无关的降解也可在不同细胞系中观察到,尽管hAHR降解的幅度也是可变的。这些发现是重要的,因为它们表明AHR的配体依赖性和独立降解是该信号转导从鱼到人的级联的保守方面。此外,该研究鉴定了几种细胞系,这些细胞系可能提供新颖的模型,以进一步评估AHR介导的信号转导和人类AHR降解的调控。

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