Department of Experimental and Clinical Medicine, Magna Graecia University and Tommaso Campanella Cancer Center, Catanzaro, Italy.
J Cell Physiol. 2013 Jul;228(7):1506-15. doi: 10.1002/jcp.24306.
Skeletal homeostasis relies upon a fine tuning of osteoclast (OCL)-mediated bone resorption and osteoblast (OBL)-dependent bone formation. This balance is unsettled by multiple myeloma (MM) cells, which impair OBL function and stimulate OCLs to generate lytic lesions. Emerging experimental evidence is disclosing a key regulatory role of microRNAs (miRNAs) in the regulation of bone homeostasis suggesting the miRNA network as potential novel target for the treatment of MM-related bone disease (BD). Here, we report that miR-29b expression decreases progressively during human OCL differentiation in vitro. We found that lentiviral transduction of miR-29b into OCLs, even in the presence of MM cells, significantly impairs tartrate acid phosphatase (TRAcP) expression, lacunae generation, and collagen degradation, which are relevant hallmarks of OCL activity. Accordingly, expression of cathepsin K and metalloproteinase 9 (MMP9) as well as actin ring rearrangement were impaired in the presence of miR-29b. Moreover, we found that canonical targets C-FOS and metalloproteinase 2 are suppressed by constitutive miR-29b expression which also downregulated the master OCL transcription factor, NAFTc-1. Overall, these data indicate that enforced expression of miR-29b impairs OCL differentiation and overcomes OCL activation triggered by MM cells, providing a rationale for miR-29b-based treatment of MM-related BD.
骨骼内稳态依赖于破骨细胞 (OCL) 介导的骨吸收和成骨细胞 (OBL) 依赖的骨形成之间的精细调节。多发性骨髓瘤 (MM) 细胞破坏 OBL 功能并刺激 OCL 产生溶骨性病变,从而打破这种平衡。新出现的实验证据揭示了 microRNAs (miRNAs) 在骨稳态调节中的关键调节作用,表明 miRNA 网络可能成为治疗 MM 相关骨病 (BD) 的潜在新靶点。在这里,我们报告 miR-29b 的表达在体外人 OCL 分化过程中逐渐降低。我们发现,即使在存在 MM 细胞的情况下,将 miR-29b 转导到 OCL 中,也会显著损害抗酒石酸酸性磷酸酶 (TRAcP) 的表达、陷窝形成和胶原降解,这些都是 OCL 活性的相关标志。因此,在存在 miR-29b 的情况下,组织蛋白酶 K 和金属蛋白酶 9 (MMP9) 的表达以及肌动蛋白环重排受到损害。此外,我们发现,经典靶标 C-FOS 和金属蛋白酶 2 被组成型 miR-29b 表达抑制,这也下调了主 OCL 转录因子 NAFTc-1。总的来说,这些数据表明,强制表达 miR-29b 会损害 OCL 的分化,并克服 MM 细胞触发的 OCL 激活,为基于 miR-29b 的 MM 相关 BD 治疗提供了依据。