Department of Oral Anatomy and Developmental Biology, Osaka University Graduate School of Dentistry, Osaka, Japan; Department of Orthodontics and Dentofacial Orthopedics, Osaka University Graduate School of Dentistry, Osaka, Japan.
Department of Oral Anatomy and Developmental Biology, Osaka University Graduate School of Dentistry, Osaka, Japan; Osaka University Dental Hospital Division of Special Care Dentistry, Osaka, Japan.
Exp Cell Res. 2018 Oct 15;371(2):417-425. doi: 10.1016/j.yexcr.2018.09.002. Epub 2018 Sep 5.
Primary cilia are appendages observed in most types of cells, and serve as cellular antennae for sensing environmental signals. Evidence is accumulating that correct ciliogenesis and ciliary functions are indispensable for normal skeletal development by regulating signaling pathways important for bone development. However, whether ciliogenesis is regulated by bone-related factors in osteoblasts is largely unknown. Here we show that Kruppel-Like Factor 4 (KLF4), which is known to repress osteoblast differentiation, supports the formation and maintenance of cilia in cultured osteoblasts; however, the length of the cilia observed in KLF4-induced cells were significantly shorter compared to the control cells. Basal Hedgehog signaling was repressed by KLF4. Significantly, activating Hedgehog signaling using a Smoothened agonist significantly rescued osteoblast mineralization and osteoblastic gene expressions. Global gene expression analysis showed that KLF4 induced number of genes including the nuclear receptor, Pregnane X receptor (PXR), and PXR repressed calvarial osteoblast mineralization and repressed Gli1 expression similar as the effect observed by inducing KLF4. Our results implicate that KLF4 plays important roles for maintaining osteoblasts in an immature state by repressing basal activation of the Hedgehog signaling.
初级纤毛是大多数类型细胞中观察到的附属物,作为细胞天线,用于感知环境信号。有证据表明,正确的纤毛发生和纤毛功能对于通过调节对骨骼发育很重要的信号通路对于正常骨骼发育是必不可少的。然而,骨细胞中是否存在骨相关因子调节纤毛发生在很大程度上尚不清楚。在这里,我们表明,已知抑制成骨细胞分化的 Kruppel 样因子 4(KLF4)支持培养的成骨细胞中纤毛的形成和维持;然而,与对照细胞相比,在 KLF4 诱导的细胞中观察到的纤毛的长度明显更短。KLF4 抑制了基础 Hedgehog 信号。值得注意的是,使用 Smoothened 激动剂激活 Hedgehog 信号可显著挽救成骨细胞矿化和成骨基因表达。全基因表达分析表明,KLF4 诱导了许多基因的表达,包括核受体孕烷 X 受体(PXR),并且 PXR 抑制颅骨成骨细胞矿化并抑制 Gli1 表达,与诱导 KLF4 观察到的效果相似。我们的研究结果表明,KLF4 通过抑制 Hedgehog 信号的基础激活,在维持成骨细胞处于未成熟状态方面发挥重要作用。