Inoue Daisuke, Kido Shinsuke, Matsumoto Toshio
Department of Medicine and Bioregulatory Sciences, University of Tokushima Graduate School of Medicine, 3-18-15 Kuramoto-cho, Tokushima 770-8503, Japan.
J Biol Chem. 2004 Nov 26;279(48):49795-803. doi: 10.1074/jbc.M404096200. Epub 2004 Sep 20.
Mechanical stress to bone plays a critical role in maintaining bone mass and strength. However, the molecular mechanism of mechanical stress-induced bone formation is not fully understood. In the present study, we demonstrate that FosB and its spliced variant DeltaFosB, which is known to increase bone mass by stimulating bone formation in vivo, is rapidly induced by mechanical loading in mouse hind limb bone in vivo and by fluid shear stress (FSS) in mouse calvarial osteoblasts in vitro both at the mRNA and protein levels. FSS induction of FosB/DeltaFosB gene expression was dependent on gadlinium-sensitive Ca(2+) influx and subsequent activation of ERK1/2. Analysis of the mouse FosB/DeltaFosB gene upstream regulatory region with luciferase reporter gene assays revealed that the FosB/DeltaFosB induction by FSS occurred at the transcriptional level and was conferred by a short fragment from -603 to -327. DNA precipitation assays and DNA decoy experiments indicated that ERK-dependent activation of CREB binding to a CRE/AP-1 like element (designated "CRE2") at the position of -413 largely contributed to the transcriptional effects of FSS. These results suggest that DeltaFosB participates in mechanical stress-induced intracellular signaling cascades that activate the osteogenic program in osteoblasts.
骨骼所受的机械应力在维持骨量和骨强度方面起着关键作用。然而,机械应力诱导骨形成的分子机制尚未完全阐明。在本研究中,我们证明FosB及其剪接变体DeltaFosB(已知其可通过在体内刺激骨形成来增加骨量),在体内小鼠后肢骨中受到机械负荷以及在体外小鼠颅骨成骨细胞中受到流体剪切力(FSS)作用时,在mRNA和蛋白质水平上均迅速被诱导。FSS对FosB/DeltaFosB基因表达的诱导依赖于钆敏感的Ca(2+)内流以及随后ERK1/2的激活。用荧光素酶报告基因分析小鼠FosB/DeltaFosB基因上游调控区域发现,FSS对FosB/DeltaFosB的诱导发生在转录水平,且由-603至-327的短片段介导。DNA沉淀实验和DNA诱饵实验表明,ERK依赖的CREB激活与-413位置处的CRE/AP-1样元件(命名为“CRE2”)结合,在很大程度上促成了FSS的转录效应。这些结果表明,DeltaFosB参与了机械应力诱导的细胞内信号级联反应,该反应激活了成骨细胞中的成骨程序。