首页> 外文期刊>Journal of cellular biochemistry. >9-cis retinoic acid accelerates calcitriol-induced osteocalcin production and promotes degradation of both vitamin D receptor and retinoid X receptor in human osteoblastic cells.
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9-cis retinoic acid accelerates calcitriol-induced osteocalcin production and promotes degradation of both vitamin D receptor and retinoid X receptor in human osteoblastic cells.

机译:9-顺式视黄酸可加速骨化三醇诱导的骨钙素生成,并促进人成骨细胞中维生素D受体和维甲酸X受体的降解。

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摘要

Abstract vitamin D receptor (VDR) and retinoid X receptor (RXR) heterodimerize to mediate the genomic actions of 1alpha,25-dihydroxyvitamin D(3) (1alpha,25(OH)(2)D(3), calcitriol), the biologically active form of vitamin D(3). In this study, we show that 9-cis retinoic acid (9-cisRA), the ligand for RXR, accelerates calcitriol-induced expression of osteocalcin gene, the marker for mature osteoblasts. Calcitriol and its synthetic analog KH1060 (1 nM) induced osteocalcin secretion after a 96-h incubation period as detected by radioimmunoassay. When these compounds were used together with 9-cisRA, osteocalcin protein secretion was, however, detected already after 72 and 48 h, respectively. Detection of osteocalcin mRNA with quantitative PCR revealed elevated mRNA levels already after a 4-h treatment of the cells with calcitriol, KH1060, or 9-cisRA compared with untreated cells. In combination treatments, 9-cisRA rapidly stimulated osteocalcin mRNA synthesis induced by the different vitamin D(3) compounds.In MG-63 cells treated with calcitriol or KH1060, the stimulation was maximal after the first 4 h and diminished thereafter. In fact, after the 48-h incubation 9-cisRA reduced osteocalcin mRNA levels in KH1060-treated cells, the amount of mRNA being only 44% of the levels obtained with KH1060 alone. The reduction was accompanied by an increased degradation rate of both VDR and RXRbeta in the presence of 9-cisRA. Furthermore, 9-cisRA increased the formation of RXRbeta-VDR-VDRE complex on the osteocalcin gene VDRE. These results suggest that 9-cisRA accelerates calcitriol-induced osteocalcin production in human osteoblastic cells through increased formation of transcriptionally active chromatin complexes and, subsequently, promotes degradation of the heterodimeric complex of VDR and RXR.
机译:摘要维生素D受体(VDR)和类维生素X受体(RXR)异源二聚体介导1alpha,25-dihydroxyvitamin D(3)(1alpha,25(OH)(2)D(3),calcitriol)的基因组作用维生素D(3)的活性形式。在这项研究中,我们显示RXR的配体9-顺式视黄酸(9-cisRA)加速骨化三醇诱导的骨钙素基因(成熟成骨细胞的标志物)的表达。放射免疫法检测到,经过96小时的孵育期后,骨化三醇及其合成类似物KH1060(1 nM)诱导了骨钙素分泌。当这些化合物与9-cisRA一起使用时,分别在72 h和48 h后就已经检测到骨钙蛋白蛋白的分泌。与未处理的细胞相比,用钙三醇,KH1060或9-cisRA处理细胞4小时后,通过定量PCR检测骨钙素mRNA显示出已经升高的mRNA水平。在联合治疗中,9-cisRA迅速刺激了由不同维生素D(3)化合物诱导的骨钙素mRNA合成。在用骨化三醇或KH1060处理的MG-63细胞中,刺激在最初的4小时后达到最大,此后减弱。实际上,经过48小时的培养,9-cisRA降低了KH1060处理的细胞中骨钙素mRNA的水平,其mRNA的量仅为单独使用KH1060所获得的水平的44%。减少伴随着在9-cisRA存在下VDR和RXRbeta的降解率增加。此外,9-cisRA增加了骨钙素基因VDRE上RXRbeta-VDR-VDRE复合物的形成。这些结果表明9-cisRA通过增加转录活性染色质复合物的形成来加速人成骨细胞中骨化三醇诱导的骨钙素的产生,并随后促进VDR和RXR的异二聚体复合物的降解。

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