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首页> 外文期刊>Molecular and Cellular Endocrinology >ERRbeta: A potent inhibitor of Nrf2 transcriptional activity.
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ERRbeta: A potent inhibitor of Nrf2 transcriptional activity.

机译:ERRbeta:Nrf2转录活性的有效抑制剂。

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The orphan nuclear receptor, estrogen-related receptor beta (ERRbeta), shares a high degree of amino acid identity with estrogen receptor alpha (ERalpha). Although ERRbeta has been shown to be critical in embryo development, little is known about its functions and target genes. Here we report that the newly identified and most common human ortholog of ERRbeta-short-form hERRbeta (SFhERRbeta) potently represses the transcriptional activity of NF-E2 Related Factor 2 (Nrf2) on antioxidant response element (ARE)-mediated gene expression. Nrf2 is a main regulator of the expression of phase II detoxifying enzymes and antioxidant proteins in the cellular protection against oxidative stress. SFhERRbeta is the most potent inhibitor of Nrf2 transcriptional activity among the three ERR family members, ERRalpha, ERRbeta and ERRgamma. Additional analyses revealed that SFhERRbeta repressed Nrf2 activity likely through physical interaction in a complex with Nrf2, not by competing for the ARE DNA-binding sites, nor bydecreasing Nrf2 protein concentration. By confocal immunofluorescence microscopy, SFhERRbeta alters the subcellular localization of Nrf2. Analyses using SFhERRbeta deletion mutants showed that SFhERRbeta interacts with Nrf2 through multiple sites. Our findings suggest that ERRbeta plays a novel functional role in the Nrf2-ARE pathway. By acting as a repressor of Nrf2, ERRbeta may be useful as a therapeutic target in cancer chemoprevention studies.
机译:孤儿核受体,雌激素相关受体β(ERRbeta),与雌激素受体α(ERalpha)具有高度的氨基酸同一性。尽管已证明ERRbeta在胚胎发育中至关重要,但对其功能和靶基因知之甚少。在这里,我们报告新发现的和最常见的人类ERRbeta-短形式hERRbeta(SFhERRbeta)直系同源物有效地抑制NF-E2相关因子2(Nrf2)在抗氧化反应元件(ARE)介导的基因表达上的转录活性。 Nrf2是细胞抗氧化应激的II期解毒酶和抗氧化剂蛋白表达的主要调节剂。在三个ERR家族成员ERRalpha,ERRbeta和ERRgamma中,SFhERRbeta是Nrf2转录活性的最有效抑制剂。进一步的分析表明,SFhERRbeta可能通过与Nrf2形成复合体的物理相互作用来抑制Nrf2的活性,而不是通过竞争ARE DNA结合位点或通过降低Nrf2的蛋白质浓度来抑制。通过共聚焦免疫荧光显微镜检查,SFhERRbeta改变了Nrf2的亚细胞定位。使用SFhERRbeta缺失突变体的分析表明SFhERRbeta通过多个位点与Nrf2相互作用。我们的发现表明,ERRbeta在Nrf2-ARE途径中发挥了新的功能作用。通过充当Nrf2的阻遏物,ERRbeta可用作癌症化学预防研究中的治疗靶标。

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