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HDX reveals the conformational dynamics of DNA sequence specific VDR co-activator interactions

机译:HDX揭示了DNA序列特异性VDR共激活因子相互作用的构象动力学

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The vitamin D receptor/retinoid X receptor-α heterodimer (VDRRXRα) regulates bone mineralization via transcriptional control of osteocalcin (BGLAP) gene and is the receptor for 1α,25-dihydroxyvitamin D3 (1,25D3). However, supra-physiological levels of 1,25D3 activates the calcium-regulating gene TRPV6 leading to hypercalcemia. An approach to attenuate this adverse effect is to develop selective VDR modulators (VDRMs) that differentially activate BGLAP but not TRPV6. Here we present structural insight for the action of a VDRM compared with agonists by employing hydrogen/deuterium exchange. Agonist binding directs crosstalk between co-receptors upon DNA binding, stabilizing the activation function 2 (AF2) surfaces of both receptors driving steroid receptor co-activator-1 (SRC1) interaction. In contrast, AF2 of VDR within VDRM:BGLAP bound heterodimer is more vulnerable for large stabilization upon SRC1 interaction compared with VDRM:TRPV6 bound heterodimer. These results reveal that the combination of ligand structure and DNA sequence tailor the transcriptional activity of VDR toward specific target genes.
机译:维生素D受体/类维生素X受体-α异二聚体(VDRRXRα)通过骨钙素(BGLAP)基因的转录控制来调节骨骼矿化,并且是1α,25-二羟基维生素D3(1,25D3)的受体。但是,1,25D3的超生理水平会激活钙调节基因TRPV6,导致高钙血症。减轻这种不利影响的一种方法是开发选择性激活BGLAP而不激活TRPV6的选择性VDR调制器(VDRM)。在这里,我们介绍了通过使用氢/氘交换,与激动剂相比,VDRM作用的结构见解。激动剂结合可指导DNA结合时辅助受体之间的串扰,从而稳定两个驱动类固醇受体共激活因子1(SRC1)相互作用的受体的激活功能2(AF2)表面。相反,与VDRM:TRPV6结合的异二聚体相比,与VDRM:TRPV6结合的异二聚体相比,VDRM:BGLAP结合的异二聚体中的VDR的AF2更易于在SRC1相互作用时具有较大的稳定性。这些结果表明,配体结构和DNA序列的结合使VDR针对特定靶基因的转录活性得以调整。

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