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首页> 外文期刊>Molecular and Cellular Endocrinology >Analysis of ligand-dependent recruitment of coactivator peptides to RXRbeta in a time-resolved fluorescence resonance energy transfer assay.
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Analysis of ligand-dependent recruitment of coactivator peptides to RXRbeta in a time-resolved fluorescence resonance energy transfer assay.

机译:在时间分辨的荧光共振能量转移测定中分析共激活肽对RXRbeta的配体依赖性募集。

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Because RXR plays a significant role in nuclear receptor signaling as a common heterodimeric partner for TR, PPAR, RAR, VDR, LXR and others, the ability of RXRbeta ligand binding domain (LBD) to interact with coregulator peptides bearing LXXLL or other interaction motifs was investigated using time-resolved fluorescence resonance energy transfer (TR-FRET). The random phage display peptide D22 and peptides derived from PGC1alpha, SRC1-4, SRC2-3, PRIP/RAP250 and RIP140 yielded the highest TR-FRET signal with RXRbeta LBD in the presence of saturating 9-cis retinoic acid (9-cisRA). Several peptides including D22, PGC1alpha, SRC3-2, PRIP/RAP250 and SRC1-4 also formed a complex with RXRbeta LBD in the presence of all-trans retinoic acid (at-RA) and the fatty acids, phytanic acid (PA) and docosahexaenoic acid (DHA). Determination of the dose dependency (EC50) of these compounds to recruit D22 to RXRbeta LBD indicated that the rank order potency was 9-cisRA>PA>at-RA>DHA. The ligands 9-cisRA and at-RA yielded an overall higher fold-change in D22 recruitment to RXRbeta LBD suggesting that more RXRbeta LBD-D22 complex was formed in the presence of these ligands under the assay conditions tested. The statistical parameter Z' factor for 9-cisRA-induced recruitment of D22 to RXRbeta LBD was 0.6 after 2h incubation, indicating a robust methodology that could be applied to high throughput screening. These results demonstrate that RXRbeta occupied with the fatty acid ligands, DHA and PA, can recruit coactivator peptides in a ligand-dependent manner.
机译:由于RXR作为TR,PPAR,RAR,VDR,LXR和其他分子的常见异二聚体伴侣在核受体信号传导中起着重要作用,因此RXRbeta配体结合域(LBD)与带有LXXLL或其他相互作用基序的共调节肽相互作用的能力是使用时间分辨荧光共振能量转移(TR-FRET)进行了研究。在存在9-顺式视黄酸(9-cisRA)的情况下,随机噬菌体展示肽D22和衍生自PGC1alpha,SRC1-4,SRC2-3,PRIP / RAP250和RIP140的肽与RXRbeta LBD产生最高TR-FRET信号。在全反式维甲酸(at-RA)和脂肪酸,植酸(PA)和脂肪酸的存在下,包括D22,PGC1alpha,SRC3-2,PRIP / RAP250和SRC1-4在内的几种肽也与RXRbeta LBD形成了复合物。二十二碳六烯酸(DHA)。确定这些化合物将D22募集到RXRbeta LBD的剂量依赖性(EC50)表明,等级效力为9-cisRA> PA> at-RA> DHA。配体9-cisRA和at-RA在D22募集到RXRbeta LBD的过程中产生了更高的折叠倍数,表明在这些配体的存在下,在测试的检测条件下形成了更多的RXRbeta LBD-D22复合物。孵育2小时后,用于9-cisRA诱导的D22募集到RXRbeta LBD的统计参数Z'因子为0.6,表明可用于高通量筛选的可靠方法。这些结果表明,被脂肪酸配体DHA和PA占据的RXRbeta可以以依赖配体的方式募集共激活肽。

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