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维生素D反应元件内的一个中心二核苷酸在细胞对天然和合成配体的反应中调节维生素D受体与DNA的结合及反式激活作用。

A central dinucleotide within vitamin D response elements modulates DNA binding and transactivation by the vitamin D receptor in cellular response to natural and synthetic ligands.

作者信息

van den Bemd Gert-Jan C M, Jhamai Mila, Staal Ada, van Wijnen Andre J, Lian Jane B, Stein Gary S, Pols Huibert A P, van Leeuwen Johannes P T M

机构信息

Department of Internal Medicine, Erasmus Medical Center, 3015 GD Rotterdam, The Netherlands.

出版信息

J Biol Chem. 2002 Apr 26;277(17):14539-46. doi: 10.1074/jbc.M111224200. Epub 2002 Feb 7.

DOI:10.1074/jbc.M111224200
PMID:11834737
Abstract

There is considerable divergence in the sequences of steroid receptor response elements, including the vitamin D response elements (VDREs). Two major VDRE-containing and thus 1,25-dihydroxyvitamin D(3) (1,25-(OH)(2)D(3))-regulated genes are the two non-collagenous, osteoblast-derived bone matrix proteins osteocalcin and osteopontin. We observed a stronger induction of osteopontin than osteocalcin mRNA expression by 1,25-(OH)(2)D(3). Subsequently, we have shown that vitamin D receptor/retinoid X receptor alpha (VDR/RXRalpha) heterodimers bind more tightly to the osteopontin VDRE than to the osteocalcin VDRE. Studies using point mutants revealed that the internal dinucleotide at positions 3 and 4 of the proximal steroid half-element are most important for modulating the strength of receptor binding. In addition, studies with VDRE-driven luciferase reporter gene constructs revealed that the central dinucleotide influences the transactivation potential of VDR/RXRalpha with the same order of magnitude as that observed in the DNA binding studies. The synthetic vitamin D analog KH1060 is a more potent stimulator of transcription and inducer of VDRE binding of VDR/RXR in the presence of nuclear factors isolated from ROS 17/2.8 osteoblast-like cells than the natural ligand 1,25-(OH)(2)D(3). Interestingly, however, KH1060 is comparable or even less potent than 1,25-(OH)(2)D(3) in stimulating VDRE binding of in vitro synthesized VDR/RXRalpha. Thus, the extent of 1,25-(OH)(2)D(3)- and KH1060-dependent binding of VDR/RXRalpha is specified by a central dinucleotide in the VDRE, and the ligand-induced effects on DNA binding are in part controlled by the cellular context of nuclear proteins.

摘要

类固醇受体反应元件的序列存在相当大的差异,包括维生素D反应元件(VDREs)。两个主要的含VDRE且因此受1,25 - 二羟基维生素D(3)(1,25-(OH)(2)D(3))调控的基因是两种非胶原蛋白、成骨细胞衍生的骨基质蛋白骨钙素和骨桥蛋白。我们观察到1,25-(OH)(2)D(3)对骨桥蛋白mRNA表达的诱导作用强于骨钙素。随后,我们发现维生素D受体/视黄酸X受体α(VDR/RXRα)异二聚体与骨桥蛋白VDRE的结合比与骨钙素VDRE的结合更紧密。使用点突变体的研究表明,近端类固醇半元件第3和4位的内部二核苷酸对于调节受体结合强度最为重要。此外,对VDRE驱动的荧光素酶报告基因构建体的研究表明,中央二核苷酸影响VDR/RXRα 的反式激活潜能,其影响程度与在DNA结合研究中观察到的相同。合成维生素D类似物KH1060在存在从ROS 17/2.8成骨样细胞分离的核因子的情况下,比天然配体1,25-(OH)(2)D(3)更能有效地刺激转录和诱导VDR/RXR与VDRE的结合。然而,有趣的是,在刺激体外合成的VDR/RXRα与VDRE的结合方面,KH1060与1,25-(OH)(2)D(3)相当甚至效力更低。因此,VDR/RXRα与1,25-(OH)(2)D(3)和KH1060依赖性结合的程度由VDRE中的中央二核苷酸决定,并且配体诱导的对DNA结合的影响部分受核蛋白的细胞环境控制。

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