Division of Rheumatology, Faculty of Medicine, University of Sherbrooke, 3001, 12th Avenue North, Sherbrooke, Quebec, Canada.
Cell Signal. 2013 Apr;25(4):717-28. doi: 10.1016/j.cellsig.2012.12.003. Epub 2013 Jan 8.
BMP-9 is a potent osteogenic factor; however, its effects on osteoclasts, the bone-resorbing cells, remain unknown. To determine the effects of BMP-9 on osteoclast formation, activity and survival, we used human cord blood monocytes as osteoclast precursors that form multinucleated osteoclasts in the presence of RANKL and M-CSF in long-term cultures. BMP-9 did not affect osteoclast formation, but adding BMP-9 at the end of the culture period significantly increased bone resorption compared to untreated cultures, and reduced both the rate of apoptosis and caspase-9 activity. BMP-9 also significantly downregulated the expression of pro-apoptotic Bid, but only after RANKL and M-CSF, which are both osteoclast survival factors, had been eliminated from the culture medium. To investigate the mechanisms involved in the effects of BMP-9, we first showed that osteoclasts expressed some BMP receptors, including BMPR-IA, BMPR-IB, ALK1, and BMPR-II. We also found that BMP-9 was able to induce the phosphorylation of Smad-1/5/8 and ERK 1/2 proteins, but did not induce p38 phosphorylation. Finally, knocking down the BMPR-II receptor abrogated the BMP-9-induced ERK-signaling, as well as the increase in bone resorption. In conclusion, these results show for the first time that BMP-9 directly affects human osteoclasts, enhancing bone resorption and protecting osteoclasts against apoptosis. BMP-9 signaling in human osteoclasts involves the canonical Smad-1/5/8 pathway, and the ERK pathway.
BMP-9 是一种有效的成骨因子;然而,其对破骨细胞(骨吸收细胞)的作用尚不清楚。为了确定 BMP-9 对破骨细胞形成、活性和存活的影响,我们使用人脐血单核细胞作为破骨细胞前体,在 RANKL 和 M-CSF 的存在下,在长期培养中形成多核破骨细胞。BMP-9 不影响破骨细胞的形成,但在培养结束时添加 BMP-9 与未处理的培养物相比,显著增加了骨吸收,同时降低了细胞凋亡率和 caspase-9 活性。BMP-9 还显著下调了促凋亡 Bid 的表达,但仅在 RANKL 和 M-CSF 从培养基中消除后才会发生这种情况,因为 RANKL 和 M-CSF 都是破骨细胞存活因子。为了研究 BMP-9 作用涉及的机制,我们首先表明破骨细胞表达一些 BMP 受体,包括 BMPR-IA、BMPR-IB、ALK1 和 BMPR-II。我们还发现 BMP-9 能够诱导 Smad-1/5/8 和 ERK 1/2 蛋白的磷酸化,但不能诱导 p38 磷酸化。最后,敲低 BMPR-II 受体阻断了 BMP-9 诱导的 ERK 信号转导以及骨吸收的增加。总之,这些结果首次表明 BMP-9 直接影响人破骨细胞,增强骨吸收并保护破骨细胞免受凋亡。BMP-9 在人破骨细胞中的信号转导涉及经典的 Smad-1/5/8 途径和 ERK 途径。