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首页> 外文期刊>Journal of biological rhythms >Modulation of clock gene expression by the transcriptional coregulator receptor interacting protein 140 (RIP140)
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Modulation of clock gene expression by the transcriptional coregulator receptor interacting protein 140 (RIP140)

机译:转录共调节因子受体相互作用蛋白140(RIP140)对时钟基因表达的调节

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Circadian rhythms are generated in central and peripheral tissues by an intracellular oscillating timing mechanism known as the circadian clock. Several lines of evidence show a strong and bidirectional interplay between metabolism and circadian rhythms. Receptor interacting protein 140 (RIP140) is a coregulator for nuclear receptors and other transcription factors that represses catabolic pathways in metabolic tissues. Although RIP140 functions as a corepressor for most nuclear receptors, mounting evidence points to RIP140 as a dual coregulator that can repress or activate different sets of genes. Here, we demonstrate that RIP140 mRNA and protein levels are under circadian regulation and identify RIP140 as a modulator of clock gene expression, suggesting that RIP140 can participate in a feedback mechanism affecting the circadian clock. We show that the absence of RIP140 disturbs the basal levels of BMAL1 and other clock genes, reducing the amplitude of their oscillations. In addition, we demonstrate that RIP140 is recruited to retinoid-related orphan receptor (ROR) binding sites on the BMAL1 promoter, directly interacts with RORα, and increases transcription from the BMAL1 promoter in a RORα-dependent manner. These results indicate that RIP140 is not only involved in metabolic control but also acts as a coactivator for RORα, influencing clock gene expression.
机译:昼夜节律通过称为昼夜节律的细胞内振荡计时机制在中央和周围组织中产生。几条证据表明,新陈代谢和昼夜节律之间存在强烈的双向相互作用。受体相互作用蛋白140(RIP140)是抑制代谢组织中分解代谢途径的核受体和其他转录因子的调节剂。尽管RIP140可以充当大多数核受体的核心抑制剂,但越来越多的证据表明RIP140是可以抑制或激活不同基因组的双重核心调节剂。在这里,我们证明RIP140 mRNA和蛋白水平处于昼夜节律调节下,并将RIP140识别为时钟基因表达的调节剂,这表明RIP140可以参与影响昼夜节律的反馈机制。我们显示,RIP140的缺失会干扰BMAL1和其他时钟基因的基础水平,从而降低其振荡幅度。此外,我们证明RIP140被募集到BMAL1启动子上的类维生素A相关孤儿受体(ROR)结合位点,直接与RORα相互作用,并以RORα依赖的方式增加BMAL1启动子的转录。这些结果表明,RIP140不仅参与代谢控制,而且还充当RORα的共激活因子,影响时钟基因表达。

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