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首页> 外文期刊>Annals of the New York Academy of Sciences >Canonical Wnt Signaling in Osteoblasts Is Required for Osteoclast Differentiation
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Canonical Wnt Signaling in Osteoblasts Is Required for Osteoclast Differentiation

机译:成骨细胞分化需要成骨细胞中的规范Wnt信号。

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摘要

Inactivation of Lrp5, a gene encoding a likely Wnt co-receptor, results in low bone mass (osteopenia) by decreasing bone formation, suggesting that Wnt signaling in osteoblasts regulates bone formation. Here we show that Tcf1 and Tcf4 are expressed in osteoblasts during development and after birth; stabilization of β-catenin, an essential component of canonical Wnt signaling, in differentiated osteoblasts results in high bone mass while its deletion from differentiated osteoblasts leads to osteopenia. Histological analysis showed that these mutations affect bone resorption. Cellular and molecular studies showed that β-catenin together with TCF proteins regulates in osteoblasts the expression of Osteoprotegerin, a major inhibitor of osteoclast differentiation. These findings demonstrate that, in differentiated osteoblasts, β-catenin and presumably Wnt signaling are negative regulators of osteoclast differentiation; thus they broaden our knowledge about functions that Wnt proteins may have at various stages of skeletogenesis.
机译:Lrp5(一种编码可能的Wnt共同受体的基因)的失活通过减少骨形成而导致低骨量(骨质减少),这表明成骨细胞中的Wnt信号调节骨形成。在这里,我们显示Tcf1和Tcf4在成骨细胞的发育过程中和出生后表达。 β-catenin(典型的Wnt信号转导的必需成分)在分化成骨细胞中的稳定导致高骨量,而从分化成骨细胞中缺失则导致骨质减少。组织学分析表明,这些突变影响骨吸收。细胞和分子研究表明,β-catenin与TCF蛋白一起调节成骨细胞中破骨细胞分化的主要抑制剂Osteoprotegerin的表达。这些发现表明,在分化的成骨细胞中,β-catenin和Wnt信号可能是破骨细胞分化的负调控因子。因此,它们拓宽了我们对Wnt蛋白在骨骼生成各个阶段可能具有的功能的认识。

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