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首页> 外文期刊>Journal of Molecular Biology >DNA-looping by RXR Tetramers Permits Transcriptional Regulation 'at a Distance'.
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DNA-looping by RXR Tetramers Permits Transcriptional Regulation 'at a Distance'.

机译:RXR四聚体进行的DNA环化允许“远距离”转录调控。

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摘要

RXR, a member of the superfamily of nuclear hormone receptors, regulates gene transcription in response to 9-cis-retinoic acid. We previously showed that, among nuclear receptors, RXR is unique in that it self-associates into homotetramers, and that these tetramers dissociate rapidly upon ligation. Here, we report that binding of RXR tetramers to DNA containing two RXR response elements results in a dramatic DNA-looping. RXR can thus juxtapose distant DNA sequences, enabling transcriptional regulation by far-upstream factors. We show that RXR functions as a DNA architectural factor and that, while this activity is regulated by 9-cis-retinoic acid, it is distinct from and independent of the receptor's intrinsic transcriptional activity. The data establish RXR as the first identified architectural factor whose activity is regulated by a small ligand, and demonstrate a novel mechanism of transcriptional regulation by retinoids.
机译:RXR是核激素受体超家族的成员,它响应9-顺-视黄酸调节基因转录。我们先前表明,在核受体中,RXR独特,因为它可以自缔合为同型四聚体,并且这些四聚体在连接后迅速解离。在这里,我们报道RXR四聚体与包含两个RXR反应元件的DNA的结合会导致戏剧性的DNA环化。因此,RXR可以并置遥远的DNA序列,从而可以通过远上游因素进行转录调控。我们表明RXR充当DNA构筑因子,虽然此活性是由9-顺-视黄酸调节的,但它不同于并独立于受体的固有转录活性。数据确定RXR为第一个鉴定的结构因子,其活性受小配体调控,并证明了类维生素A转录调控的新机制。

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