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首页> 外文期刊>The Journal of biological chemistry >Heterodimer formation with retinoic acid receptor RXRα modulates coactivator recruitment by peroxisome proliferator-activated receptor PPARγ
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Heterodimer formation with retinoic acid receptor RXRα modulates coactivator recruitment by peroxisome proliferator-activated receptor PPARγ

机译:用视黄酸受体RXRα通过过氧化物组织增殖物激活的受体PPARγ调节共膜剂募集的异二聚体形成

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Nuclear receptors (NRs) activate transcription of target genes in response to binding of ligands to their ligand-binding domains (LBDs). Typically, in vitro assays use either gene expression or the recruitment of coactivators to the isolated LBD of the NR of interest to measure NR activation. However, this approach ignores that NRs function as homo- as well as heterodimers and that the LBD harbors the main dimerization interface. Cofactor recruitment is thereby interconnected with oligomerization status as well as ligand occupation of the partnering LBD through allosteric cross talk. Here we present a modular set of homogeneous time-resolved FRET–based assays through which we investigated the activation of PPARγ in response to ligands and the formation of heterodimers with its obligatory partner RXRα. We introduced mutations into the RXRα LBD that prevent coactivator binding but do not interfere with LBD dimerization or ligand binding. This enabled us to specifically detect PPARγ coactivator recruitment to PPARγ:RXRα heterodimers. We found that the RXRα agonist SR11237 destabilized the RXRα homodimer but promoted formation of the PPARγ:RXRα heterodimer, while being inactive on PPARγ itself. Of interest, incorporation of PPARγ into the heterodimer resulted in a substantial gain in affinity for coactivator CBP-1, even in the absence of ligands. Consequently, SR11237 indirectly promoted coactivator binding to PPARγ by shifting the oligomerization preference of RXRα toward PPARγ:RXRα heterodimer formation. These results emphasize that investigation of ligand-dependent NR activation should take NR dimerization into account. We envision these assays as the necessary assay tool kit for investigating NRs that partner with RXRα.
机译:核受体(NRS)响应配体与其配体结合结构域(LBDS)的结合而激活靶基因的转录。通常,体外测定使用基因表达或将共觉器募集到NR的分离的LBD以测量NR活化。然而,这种方法忽略了NRS函数作为同源以及异二聚体,并且LBD留出主要二聚体界面。由此通过颠覆性交叉谈话与寡头化状态以及配体占据合作伙伴的配体职业招聘。在这里,我们介绍了一种模块化的基于均匀时间分辨的FRET的测定法,我们通过该测定方法通过该测定法研究了PPARγ的激活,以应对配体和与其强制伴侣RXRα的异二聚体的形成。我们将突变引入RXRαLBD,该RXRα1bd可防止共催光剂结合,但不会干扰LBD二聚化或配体结合。这使我们能够特异性地检测PPARγ共催胶剂募集到PPARγ:RXRα异二聚体。我们发现RXRα激动剂SR11237不稳定了RXRα同源过二聚体,但促进了PPARγ:RxRα异二聚体的形成,同时在PPARγ本身上无活性。感兴趣的是,即使在没有配体的情况下,也导致对异二聚体的PPARγ掺入异二聚体中的基本上的增益。因此,SR11237通过将RxRα的寡聚偏好偏向PPARγ的寡聚偏好偏好,间接促进与PPARγ的共粘膜结合:RXRα异二聚体形成。这些结果强调,依赖于配体依赖性NR活化的调查应考虑NR二聚体。我们设想这些测定作为用于研究与RXRα合作的NRS的必要的测定工具试剂盒。

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