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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Cartilage-specific β-catenin signaling regulates chondrocyte maturation, generation of ossification centers, and perichondrial bone formation during skeletal development
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Cartilage-specific β-catenin signaling regulates chondrocyte maturation, generation of ossification centers, and perichondrial bone formation during skeletal development

机译:软骨特异性β-catenin信号传导调节骨骼发育过程中的软骨细胞成熟,骨化中心的生成和软骨膜骨形成

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摘要

The WNT/β-catenin signaling pathway is a critical regulator of chondrocyte and osteoblast differentiation during multiple phases of cartilage and bone development. Although the importance of β-catenin signaling during the process of endochondral bone development has been previously appreciated using a variety of genetic models that manipulate β-catenin in skeletal progenitors and osteoblasts, genetic evidence demonstrating a specific role for β-catenin in committed growth-plate chondrocytes has been less robust. To identify the specific role of cartilage-derived β-catenin in regulating cartilage and bone development, we studied chondrocyte-specific gain- and loss-of-function genetic mouse models using the tamoxifen-inducible Col2Cre ERT2 transgene in combination with β-catenin fx(exon3)/wt or β-catenin fx/fx floxed alleles, respectively. From these genetic models and biochemical data, three significant and novel findings were uncovered. First, cartilage-specific β-catenin signaling promotes chondrocyte maturation, possibly involving a bone morphogenic protein 2 (BMP2)-mediated mechanism. Second, cartilage-specific β-catenin facilitates primary and secondary ossification center formation via the induction of chondrocyte hypertrophy, possibly through enhanced matrix metalloproteinase (MMP) expression at sites of cartilage degradation, and potentially by enhancing Indian hedgehog (IHH) signaling activity to recruit vascular tissues. Finally, cartilage-specific β-catenin signaling promotes perichondrial bone formation possibly via a mechanism in which BMP2 and IHH paracrine signals synergize to accelerate perichondrial osteoblastic differentiation. The work presented here supports the concept that the cartilage-derived β-catenin signal is a central mediator for major events during endochondral bone formation, including chondrocyte maturation, primary and secondary ossification center development, vascularization, and perichondrial bone formation.
机译:WNT /β-catenin信号通路是软骨和骨骼发育多个阶段中软骨细胞和成骨细胞分化的关键调节剂。尽管先前已经使用各种在骨骼祖细胞和成骨细胞中操纵β-catenin的遗传模型认识到β-catenin信号在软骨内骨发育过程中的重要性,但遗传证据证明了β-catenin在致死性生长中的特定作用,板软骨细胞的健壮性较差。为了确定软骨衍生的β-catenin在调节软骨和骨骼发育中的特定作用,我们使用了他莫昔芬诱导型Col2Cre ERT2转基因与β-cateninfx的结合,研究了软骨细胞特有的功能丧失和遗传的小鼠模型(exon3)/ wt或β-cateninfx / fx固定等位基因。从这些遗传模型和生化数据中,发现了三个重要且新颖的发现。首先,软骨特异性β-catenin信号传导促进软骨细胞成熟,可能涉及骨形态发生蛋白2(BMP2)介导的机制。其次,软骨特异性β-catenin可能通过诱导软骨细胞肥大,促进软骨退化部位的基质金属蛋白酶(MMP)表达,并可能通过增强印度刺猬(IHH)信号传导活性来促进软骨细胞肥大,从而促进初级和次级骨化中心的形成。血管组织。最后,软骨特异性β-catenin信号传导可能通过BMP2和IHH旁分泌信号协同作用来加速软骨膜成骨细胞分化的机制来促进软骨膜骨形成。本文提出的工作支持这样一个概念,即软骨衍生的β-catenin信号是软骨内骨形成过程中主要事件的主要介质,包括软骨细胞成熟,原发性和继发性骨化中心发育,血管形成和软骨膜骨形成。

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