Zhao Ming, Ko Seon-Yle, Liu Jin-Hua, Chen Di, Zhang Jianghong, Wang Baolin, Harris Stephen E, Oyajobi Babatunde O, Mundy Gregory R
Department of Medicine/Clinical Pharmacology, Vanderbilt University Medical Center, Nashville, Tennessee 372321, USA.
Mol Cell Biol. 2009 Mar;29(5):1291-305. doi: 10.1128/MCB.01566-08. Epub 2008 Dec 22.
Bone morphogenetic protein 2 (BMP-2) is essential for postnatal bone formation and fracture repair. By screening chemical libraries for BMP-2 mimics using a cell-based assay, we identified inhibitors of microtubule assembly as stimulators of BMP-2 transcription. These microtubule inhibitors increased osteoblast differentiation in vitro, stimulated periosteal bone formation when injected locally over murine calvaria, and enhanced trabecular bone formation when administered systemically in vivo. To explore molecular mechanisms mediating these responses, we examined effects of microtubule inhibitors on the hedgehog (Hh) pathway, since this pathway is known to regulate BMP-2 transcription in osteoblasts and microtubules have been shown to be involved in Hh signaling in Drosophila. Here we show that in osteoblasts, inhibition of microtubule assembly increased cytoplasmic levels and transcriptional activity of Gli2, a transcriptional mediator of Hh signaling that we have previously shown to enhance BMP-2 expression in osteoblasts (M. Zhao et al., Mol. Cell. Biol. 26:6197-6208, 2006). Microtubule inhibition blocked beta-TrCP-mediated proteasomal processing of Gli2 in osteoblasts. In summary, inhibition of microtubule assembly enhances BMP-2 gene transcription and subsequent bone formation, in part, through inhibiting proteasomal processing of Gli2 and increasing intracellular Gli2 concentrations.
骨形态发生蛋白2(BMP - 2)对出生后骨形成和骨折修复至关重要。通过基于细胞的分析方法在化学文库中筛选BMP - 2模拟物,我们鉴定出微管组装抑制剂可作为BMP - 2转录的刺激剂。这些微管抑制剂在体外增加成骨细胞分化,当局部注射到小鼠颅骨上时刺激骨膜骨形成,并且在体内全身给药时增强小梁骨形成。为了探索介导这些反应的分子机制,我们研究了微管抑制剂对刺猬(Hh)信号通路的影响,因为已知该通路调节成骨细胞中的BMP - 2转录,并且已证明微管参与果蝇中的Hh信号传导。在这里我们表明,在成骨细胞中,微管组装的抑制增加了Gli2的细胞质水平和转录活性,Gli2是Hh信号传导的转录介质,我们之前已证明其可增强成骨细胞中的BMP - 2表达(M. Zhao等人,《分子与细胞生物学》26:6197 - 6208,2006年)。微管抑制阻断了成骨细胞中β - TrCP介导的Gli2蛋白酶体加工。总之,微管组装的抑制部分通过抑制Gli2的蛋白酶体加工并增加细胞内Gli2浓度来增强BMP - 2基因转录和随后的骨形成。