Skeletal health relies on architectural integrity and sufficient bone mass, which are maintained through a tightly regulated equilibrium of bone resorption by osteoclasts and bone formation by osteoblasts. Genetic studies have linked the gene coding for low-density lipoprotein receptor-related protein1 (Lrp1) to bone traits but whether these associations are based on a causal molecular relationship is unknown. Here, we show that Lrp1 in osteoblasts is a novel regulator of osteoclast activity and bone mass. Mice lacking Lrp1 specifically in the osteoblast lineage displayed normal osteoblast function but severe osteoporosis due to highly increased osteoclast numbers and bone resorption. Osteoblast Lrp1 limited receptor activator of NF-κB ligand (RANKL) expression in vivo and in vitro through attenuation of platelet-derived growth factor (PDGF-BB) signaling. In co-culture, Lrp1-deficient osteoblasts stimulated osteoclastogenesis in a PDGFRβ-dependent manner and in vivo treatment with the PDGFR tyrosine kinase inhibitor imatinib mesylate limited RANKL production and led to complete remission of the osteoporotic phenotype. These results identify osteoblast Lrp1 as a key regulator of osteoblast-to-osteoclast communication and bone mass through a PDGF-RANKL signaling axis in osteoblasts and open perspectives to further explore the potential of PDGF signaling inhibitors in counteracting bone loss as well as to evaluate the importance of functional LRP1 gene variants in the control of bone mass in humans.
Lrp1 in osteoblasts controls osteoclast activity and protects against osteoporosis by limiting PDGF-RANKL signaling.
成骨细胞中的 Lrp1 控制破骨细胞活性,并通过限制 PDGF-RANKL 信号传导来防止骨质疏松症
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作者:Bartelt Alexander, Behler-Janbeck Friederike, Beil F Timo, Koehne Till, Müller Brigitte, Schmidt Tobias, Heine Markus, Ochs Laura, Yilmaz Tayfun, Dietrich Martin, Tuckermann Jan P, Amling Michael, Herz Joachim, Schinke Thorsten, Heeren Joerg, Niemeier Andreas
| 期刊: | Bone Research | 影响因子: | 15.000 |
| 时间: | 2018 | 起止号: | 2018 Feb 26; 6:4 |
| doi: | 10.1038/s41413-017-0006-3 | 研究方向: | 信号转导、细胞生物学 |
| 疾病类型: | 骨质疏松 | ||
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