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Allosteric interaction of the 1alpha,25-dihydroxyvitamin D3 receptor and the retinoid X receptor on DNA

机译:1alpha,25-dihydroxyvitamin D3受体和类维生素A X受体在DNA上的变构相互作用

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摘要

Genomic actions of the hormone 1alpha,25-dihydroxy-vitamin D3(VD) are mediated by the transcription factor VDR, which is a member of the nuclear receptor superfamily. VDR acts in most cases as a heterodimeric complex with the retinoid X receptor (RXR) from specific DNA sequences in the promoter of VD target genes called VD response elements (VDREs). This study describes a mutation (K45A) of the VDR DNA binding domain that enhances the affinity and ligand responsiveness of VDR-RXR heterodimers on some VDREs. In analogy to a homologous mutation in the glucocorticoid receptor (K461A), this lysine residue appears to function as an allosteric 'lock'. Interestingly, overexpression of RXR was found to reduce the responsiveness and sensitivity of wild type VDR to VD, but enhance the response of VDRK45A. Moreover, the transactivation domains of both VDR and RXR were shown to be essential for obtaining responsiveness of the heterodimers to VD and 9- cis retinoic acid (the RXR ligand). This indicates that RXR is an active rather than silent partner of the VDR on the VDREs tested. Taken together, transactivation by VDR-RXR heterodimers can be triggered individually by all components of the protein-DNA complex, but full potency appears to be reached through allosteric interaction.
机译:激素1alpha,25-二羟基维生素D3(VD)的基因组作用由转录因子VDR介导,转录因子VDR是核受体超家族的成员。在大多数情况下,VDR与VD目标基因启动子中称为VD响应元件(VDRE)的特定DNA序列的类视色素X受体(RXR)形成异源二聚体复合物。这项研究描述了VDR DNA结合结构域的突变(K45A),可增强VDR-RXR异二聚体对某些VDRE的亲和力和配体响应性。与糖皮质激素受体(K461A)的同源突变类似,此赖氨酸残基似乎起了变构“锁”作用。有趣的是,发现RXR的过表达降低了野生型VDR对VD的响应性和敏感性,但增强了VDRK45A的响应性。此外,VDR和RXR的反式激活结构域对于获得异二聚体对VD和9-顺式视黄酸(RXR配体)的响应性至关重要。这表明RXR在测试的VDRE上是VDR的主动而不是静默的伙伴。综上所述,VDR-RXR异源二聚体的反式激活可以由蛋白质-DNA复合物的所有组分单独触发,但通过变构相互作用似乎可以达到完全效力。

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