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Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth

机译:Wnt信号在Bmp调节松质骨膜和骨膜骨生长中的差异参与

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摘要

Bone morphogenetic proteins (Bmp) are well-known to induce bone formation following chondrogenesis, but the direct role of Bmp signaling in the osteoblast lineage is not completely understood. We have recently shown that deletion of the receptor Bmpr1a in the osteoblast lineage with Dmp1-Cre reduces osteoblast activity in general but stimulates proliferation of preosteoblasts specifically in the cancellous bone region, resulting in diminished periosteal bone growth juxtaposed with excessive cancellous bone formation. Because expression of sclerostin (SOST), a secreted Wnt antagonist, is notably reduced in the Bmpr1a-deficient osteocytes, we have genetically tested the hypothesis that increased Wnt signaling might mediate the increase in cancellous bone formation in response to Bmpr1a deletion. Forced expression of human SOST from a Dmp1 promoter fragment partially rescues preosteoblast hyperproliferation and cancellous bone overgrowth in the Bmpr1a mutant mice, demonstrating functional interaction between Bmp and Wnt signaling in the cancellous bone compartment. To test whether increased Wnt signaling can compensate for the defect in periosteal growth caused by Bmpr1a deletion, we have generated compound mutants harboring a hyperactive mutation (A214V) in the Wnt receptor Lrp5. However, the mutant Lrp5 does not restore periosteal bone growth in the Bmpr1a-deficient mice. Thus, Bmp signaling restricts cancellous bone accrual partly through induction of SOST that limits preosteoblast proliferation, but promotes periosteal bone growth apparently independently of Wnt activation.
机译:众所周知,骨形态发生蛋白(Bmp)会在软骨形成后诱导骨骼形成,但是尚未完全了解Bmp信号在成骨细胞谱系中的直接作用。我们最近发现,用Dmp1-Cre删除成骨细胞谱系中的受体Bmpr1a通常会降低成骨细胞的活性,但会刺激前成骨细胞的增殖,特别是在松质骨区域,导致骨膜骨生长减少,并形成过多的松质骨。因为在Bmpr1a缺失的骨细胞中硬化蛋白(SOST)(一种分泌的Wnt拮抗剂)的表达显着降低,所以我们已经通过基因测试验证了Wnt信号转导可能介导Bmpr1a缺失引起的松质骨形成增加的假说。 Dmp1启动子片段中人类SOST的强制表达部分挽救了Bmpr1a突变小鼠的成骨细胞过度增殖和松质骨过度生长,证明了松质骨腔中Bmp和Wnt信号之间的功能相互作用。为了测试增加的Wnt信号传导是否可以补偿Bmpr1a缺失引起的骨膜生长缺陷,我们生成了在Wnt受体Lrp5中具有过度活跃突变(A214V)的复合突变体。但是,突变体Lrp5不能恢复Bmpr1a缺陷小鼠的骨膜骨生长。因此,Bmp信号传导部分地通过诱导SOST限制了成骨细胞的增殖,从而限制了成骨细胞的增殖,但明显促进了骨膜的骨生长,而与Wnt激活无关。

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