Cancer Biology Division, IIT Research Institute, 10 West 35th Street, Chicago, IL 60616, USA.
Exp Cell Res. 2012 Nov 15;318(19):2490-7. doi: 10.1016/j.yexcr.2012.07.020. Epub 2012 Aug 4.
Heterodimerization and cross-talk between nuclear hormone receptors often occurs. For example, estrogen receptor alpha (ERα) physically binds to peroxisome proliferator-activated receptor gamma (PPARγ) and inhibits its transcriptional activity. The interaction between PPARγ and the vitamin D receptor (VDR) however, is unknown. Here, we elucidate the molecular mechanisms linking PPARγ and VDR signaling, and for the first time we show that PPARγ physically associates with VDR in human breast cancer cells. We found that overexpression of PPARγ decreased 1α,25-dihydroxyvitamin D(3) (1,25D(3)) mediated transcriptional activity of the vitamin D target gene, CYP24A1, by 49% and the activity of VDRE-luc, a vitamin D responsive reporter, by 75% in T47D human breast cancer cells. Deletion mutation experiments illustrated that helices 1 and 4 of PPARγ's hinge and ligand binding domains, respectively, governed this suppressive function. Additionally, abrogation of PPARγ's AF2 domain attenuated its repressive action on 1,25D(3) transactivation, indicating that this domain is integral in inhibiting VDR signaling. PPARγ was also found to compete with VDR for their binding partner retinoid X receptor alpha (RXRα). Overexpression of RXRα blocked PPARγ's suppressive effect on 1,25D(3) action, enhancing VDR signaling. In conclusion, these observations uncover molecular mechanisms connecting the PPARγ and VDR pathways.
核激素受体的异二聚化和串扰经常发生。例如,雌激素受体 alpha(ERα)与过氧化物酶体增殖物激活受体 gamma(PPARγ)物理结合并抑制其转录活性。然而,PPARγ 与维生素 D 受体(VDR)之间的相互作用尚不清楚。在这里,我们阐明了连接 PPARγ 和 VDR 信号的分子机制,并且首次表明 PPARγ 与人乳腺癌细胞中的 VDR 物理相关。我们发现,过表达 PPARγ 使 1α,25-二羟维生素 D(1,25D(3))介导的维生素 D 靶基因 CYP24A1 的转录活性降低了 49%,VDRE-luc 的活性降低了 75%,VDRE-luc 是维生素 D 反应性报告基因。缺失突变实验表明,PPARγ 的铰链和配体结合结构域的螺旋 1 和 4 分别控制了这种抑制功能。此外,PPARγ 的 AF2 结构域的缺失减弱了其对 1,25D(3)反式激活的抑制作用,表明该结构域对于抑制 VDR 信号至关重要。还发现 PPARγ 与 VDR 竞争其结合伴侣视黄酸 X 受体 alpha(RXRα)。RXRα 的过表达阻断了 PPARγ 对 1,25D(3)作用的抑制作用,增强了 VDR 信号。总之,这些观察结果揭示了连接 PPARγ 和 VDR 途径的分子机制。