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首页> 外文期刊>Development >BMP signaling negatively regulates bone mass through sclerostin by inhibiting the canonical Wnt pathway.
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BMP signaling negatively regulates bone mass through sclerostin by inhibiting the canonical Wnt pathway.

机译:BMP信号传导通过抑制经典Wnt途径,通过硬化素负调节骨量。

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摘要

Bone morphogenetic proteins (BMPs) are known to induce ectopic bone. However, it is largely unknown how BMP signaling in osteoblasts directly regulates endogenous bone. This study investigated the mechanism by which BMP signaling through the type IA receptor (BMPR1A) regulates endogenous bone mass using an inducible Cre-loxP system. When BMPR1A in osteoblasts was conditionally disrupted during embryonic bone development, bone mass surprisingly was increased with upregulation of canonical Wnt signaling. Although levels of bone formation markers were modestly reduced, levels of resorption markers representing osteoclastogenesis were severely reduced, resulting in a net increase in bone mass. The reduction of osteoclastogenesis was primarily caused by Bmpr1a-deficiency in osteoblasts, at least through the RANKL-OPG pathway. Sclerostin (Sost) expression was downregulated by about 90% and SOST protein was undetectable in osteoblasts and osteocytes, whereas the Wnt signaling was upregulated. Treatment of Bmpr1a-deficient calvariae with sclerostin repressed the Wnt signaling and restored normal bone morphology. By gain of Smad-dependent BMPR1A signaling in mice, Sost expression was upregulated and osteoclastogenesis was increased. Finally, the Bmpr1a-deficient bone phenotype was rescued by enhancing BMPR1A signaling, with restoration of osteoclastogenesis. These findings demonstrate that BMPR1A signaling in osteoblasts restrain endogenous bone mass directly by upregulating osteoclastogenesis through the RANKL-OPG pathway, or indirectly by downregulating canonical Wnt signaling through sclerostin, a Wnt inhibitor and a bone mass mediator.
机译:已知骨形态发生蛋白(BMP)诱导异位骨。然而,很大程度上未知成骨细胞中BMP信号如何直接调节内源性骨。这项研究调查了使用诱导型Cre-loxP系统通过IA型受体(BMPR1A)进行BMP信号传导调节内源性骨质的机制。当成骨细胞中的BMPR1A在胚胎骨骼发育过程中受到有条件的破坏时,骨骼质量出乎意料地随着经典Wnt信号的上调而增加。尽管适度降低了骨形成标志物的水平,但代表破骨细胞形成的再吸收标志物的水平却大大降低了,从而导致骨量的净增加。破骨细胞生成的减少主要是由成骨细胞中Bmpr1a缺乏引起的,至少是通过RANKL-OPG途径引起的。硬化蛋白(Sost)的表达下调了约90%,在成骨细胞和骨细胞中未检测到SOST蛋白,而Wnt信号被上调。硬化蛋白治疗Bmpr1a缺失的颅骨可抑制Wnt信号传导并恢复正常的骨形态。通过在小鼠中获得Smad依赖性BMPR1A信号传导,Sost表达上调,破骨细胞增多。最后,通过增强BMPR1A信号传导并恢复破骨细胞形成来挽救缺乏Bmpr1a的骨表型。这些发现表明,成骨细胞中的BMPR1A信号直接通过上调通过RANKL-OPG途径的破骨细胞生成而抑制内源性骨量,或通过下调通过硬化素,Wnt抑制剂和骨量介体的经典Wnt信号来间接抑制内源性骨量。

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