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条件性敲除分化破骨细胞中的 Bmpr1a 会增加成骨细胞的骨形成,从而增加小鼠重塑骨的体积。

Conditional deletion of Bmpr1a in differentiated osteoclasts increases osteoblastic bone formation, increasing volume of remodeling bone in mice.

机构信息

Department of Bone and Cartilage Biology, Osaka University Graduate School of Medicine, Osaka, Japan.

出版信息

J Bone Miner Res. 2011 Oct;26(10):2511-22. doi: 10.1002/jbmr.477.

Abstract

Bone undergoes remodeling consisting of osteoclastic bone resorption followed by osteoblastic bone formation throughout life. Although the effects of bone morphogenetic protein (BMP) signals on osteoblasts have been studied extensively, the function of BMP signals in osteoclasts has not been fully elucidated. To delineate the function of BMP signals in osteoclasts during bone remodeling, we deleted BMP receptor type IA (Bmpr1a) in an osteoclast-specific manner using a knock-in Cre mouse line to the cathepsin K locus (Ctsk(Cre/+);Bmpr1a(flox/flox), designated as Bmpr1a(ΔOc/ΔOc)). Cre was specifically expressed in multinucleated osteoclasts in vivo. Cre-dependent deletion of the Bmpr1a gene occurred at 4 days after cultivation of bone marrow macrophages obtained from Bmpr1a(ΔOc/ΔOc) with RANKL. These results suggested that Bmpr1a was deleted after formation of osteoclasts in Bmpr1a(ΔOc/ΔOc) mice. Expression of bone-resorption markers increased, thus suggesting that BMPRIA signaling negatively regulates osteoclast differentiation. Trabeculae in tibia and femurs were thickened in 3.5-, 8-, and 12-week-old Bmpr1a(ΔOc/ΔOc) mice. Bone histomorphometry revealed increased bone volume associated with increased osteoblastic bone-formation rates (BFR) in the remodeling bone of the secondary spongiosa in Bmpr1a(ΔOc/ΔOc) tibias at 8 weeks of age. For comparison, we also induced an osteoblast-specific deletion of Bmpr1a using Col1a1-Cre. The resulting mice showed increased bone volume with marked decreases in BFR in tibias at 8 weeks of age. These results indicate that deletion of Bmpr1a in differentiated osteoclasts increases osteoblastic bone formation, thus suggesting that BMPR1A signaling in osteoclasts regulates coupling to osteoblasts by reducing bone-formation activity during bone remodeling.

摘要

骨骼在一生中不断进行重塑,包括破骨细胞的骨吸收和随后的成骨细胞的骨形成。尽管骨形态发生蛋白 (BMP) 信号对成骨细胞的作用已经得到了广泛的研究,但 BMP 信号在破骨细胞中的功能尚未完全阐明。为了描绘 BMP 信号在骨重塑过程中破骨细胞中的功能,我们使用一种靶向组织蛋白酶 K 基因座 (Ctsk(Cre/+);Bmpr1a(flox/flox)的 Cre 敲入鼠系以破骨细胞特异性方式删除了 BMP 受体 IA 型 (Bmpr1a) (命名为 Bmpr1a(ΔOc/ΔOc)))。Cre 在体内特异性表达于多核破骨细胞中。在从 Bmpr1a(ΔOc/ΔOc) 小鼠的骨髓巨噬细胞中用 RANKL 培养 4 天后,发生了 Cre 依赖性的 Bmpr1a 基因缺失。这些结果表明,在 Bmpr1a(ΔOc/ΔOc) 小鼠中,Bmpr1a 在破骨细胞形成后被删除。骨吸收标志物的表达增加,这表明 BMPRIA 信号负调控破骨细胞分化。3.5、8 和 12 周龄 Bmpr1a(ΔOc/ΔOc) 小鼠的胫骨和股骨的小梁变厚。骨组织形态计量学显示,与 8 周龄 Bmpr1a(ΔOc/ΔOc) 胫骨次级松质骨的再塑造骨中的成骨细胞骨形成率 (BFR) 增加相关的骨体积增加。为了比较,我们还使用 Col1a1-Cre 诱导了成骨细胞特异性的 Bmpr1a 缺失。结果显示,在 8 周龄时,这些小鼠的骨体积增加,BFR 明显降低。这些结果表明,分化的破骨细胞中 Bmpr1a 的缺失增加了成骨细胞的骨形成,这表明破骨细胞中的 BMPR1A 信号通过降低骨形成活性来调节与成骨细胞的偶联,从而促进骨重塑过程中的骨形成。

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