Ellies Debra L, Economou Androulla, Viviano Beth, Rey Jean-Philippe, Paine-Saunders Stephenie, Krumlauf Robb, Saunders Scott
Stowers Institute for Medical Research, Kansas City, Missouri, United States of America.
National Institute for Medical Research, The Ridgeway, Mill Hill, London, United Kingdom.
PLoS One. 2014 May 1;9(5):e96257. doi: 10.1371/journal.pone.0096257. eCollection 2014.
In this study using genetic approaches in mouse we demonstrate that the secreted protein Wise plays essential roles in regulating early bone formation through its ability to modulate Wnt signaling via interactions with the Lrp5 co-receptor. In Wise-/- mutant mice we find an increase in the rate of osteoblast proliferation and a transient increase in bone mineral density. This change in proliferation is dependent upon Lrp5, as Wise;Lrp5 double mutants have normal bone mass. This suggests that Wise serves as a negative modulator of Wnt signaling in active osteoblasts. Wise and the closely related protein Sclerostin (Sost) are expressed in osteoblast cells during temporally distinct early and late phases in a manner consistent with the temporal onset of their respective increased bone density phenotypes. These data suggest that Wise and Sost may have common roles in regulating bone development through their ability to control the balance of Wnt signaling. We find that Wise is also required to potentiate proliferation in chondrocytes, serving as a potential positive modulator of Wnt activity. Our analyses demonstrate that Wise plays a key role in processes that control the number of osteoblasts and chondrocytes during bone homeostasis and provide important insight into mechanisms regulating the Wnt pathway during skeletal development.
在这项利用小鼠基因方法的研究中,我们证明分泌蛋白Wise通过与Lrp5共受体相互作用调节Wnt信号传导的能力,在调节早期骨形成中发挥着重要作用。在Wise基因敲除的突变小鼠中,我们发现成骨细胞增殖速率增加,骨矿物质密度短暂升高。这种增殖变化依赖于Lrp5,因为Wise;Lrp5双突变体的骨量正常。这表明Wise在活跃的成骨细胞中作为Wnt信号的负调节剂。Wise和密切相关的蛋白质硬化蛋白(Sost)在成骨细胞中以与其各自增加骨密度表型的时间发作一致的方式在时间上不同的早期和晚期阶段表达。这些数据表明,Wise和Sost可能通过控制Wnt信号传导平衡在调节骨骼发育中具有共同作用。我们发现Wise也是增强软骨细胞增殖所必需的,作为Wnt活性的潜在正调节剂。我们的分析表明,Wise在控制骨稳态期间成骨细胞和软骨细胞数量的过程中起关键作用,并为骨骼发育过程中调节Wnt途径的机制提供重要见解。
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