Wu Wei, Zhang Xiaoyu, Zanello Laura P
Department of Biochemistry, University of California, 5436 Boyce Hall, Riverside, CA 92521, USA.
Cancer Lett. 2007 Aug 28;254(1):75-86. doi: 10.1016/j.canlet.2007.02.013. Epub 2007 Apr 6.
The molecular mechanisms underlying antiproliferative actions of the steroid 1alpha,25-dihydroxy vitamin D(3) (1,25D) in human osteosarcoma cells are known only partially. To better understand the signaling involved in 1,25D anti-tumorigenic properties in bone, we stably silenced vitamin D receptor (VDR) expression in the human osteosarcoma SaOS-2 cell line. We found that 1,25D treatment reduced cell proliferation by approximately 25% after 3 days only in SaOS-2 cells expressing native levels of VDR protein, and involved activation of MAPK/AP-1/p21(waf1) pathways. Both sustained (3 days) and transient (15min) 1,25D treatment activated JNK and ERK1/2 MAPK signaling in a nongenomic VDR-dependent manner. However, only sustained exposure to hormone led to upregulation of p21 and subsequent genomic control of the cell cycle. Specific blockade of MEK1/MEK2 cascade upstream from ERK1/2 abrogated 1,25D activation of AP-1 and p21, and subsequent antiproliferative effects, even in the presence of a nuclear VDR. We conclude that 1,25D-induced inhibition of human osteosarcoma cell proliferation occurs via sustained activation of JNK and MEK1/MEK2 pathways downstream of nongenomic VDR signaling that leads to upregulation of a c-Jun/c-Fos (AP-1) complex, which in turn modulates p21(waf1) gene expression. Our results demonstrate a cross-talk between 1,25D/VDR nongenomic and genomic signaling at the level of MAP kinase activation that leads to reduction of cell proliferation in human osteosarcoma cells.
类固醇1α,25 - 二羟基维生素D(3)(1,25D)对人骨肉瘤细胞抗增殖作用的分子机制目前仅部分为人所知。为了更好地理解1,25D在骨组织中抗肿瘤特性所涉及的信号传导,我们在人骨肉瘤SaOS - 2细胞系中稳定沉默了维生素D受体(VDR)的表达。我们发现,仅在表达天然水平VDR蛋白的SaOS - 2细胞中,1,25D处理3天后可使细胞增殖降低约25%,且这一过程涉及MAPK/AP - 1/p21(waf1)信号通路的激活。持续(3天)和短暂(15分钟)的1,25D处理均以非基因组VDR依赖的方式激活JNK和ERK1/2 MAPK信号传导。然而,只有持续暴露于激素才会导致p21上调以及随后对细胞周期的基因组调控。ERK1/2上游的MEK1/MEK2级联反应的特异性阻断消除了1,25D对AP - 1和p21的激活以及随后的抗增殖作用,即使存在核VDR时也是如此。我们得出结论,1,25D诱导的人骨肉瘤细胞增殖抑制是通过非基因组VDR信号传导下游的JNK和MEK1/MEK2信号通路的持续激活而发生的,这导致c - Jun/c - Fos(AP - 1)复合物上调,进而调节p21(waf1)基因表达。我们的结果证明了1,25D/VDR非基因组和基因组信号传导在MAP激酶激活水平上的相互作用,这种相互作用导致人骨肉瘤细胞增殖减少。