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首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Hedgehog inhibits beta-catenin activity in synovial joint development and osteoarthritis
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Hedgehog inhibits beta-catenin activity in synovial joint development and osteoarthritis

机译:Hedgehog抑制滑膜关节发育和骨关节炎中的β-连环蛋白活性

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Both the WNT/beta-catenin and hedgehog signaling pathways are important in the regulation of limb development, chondrocyte differentiation, and degeneration of articular cartilage in osteoarthritis (OA). It is not clear how these signaling pathways interact in interzone cell differentiation and synovial joint morphogenesis. Here, we determined that constitutive activation of hedgehog signaling specifically within interzone cells induces joint morphological changes by selectively inhibiting beta-catenin-induced Fgf18 expression. Stabilization of beta-catenin or treatment with FGF18 rescued hedgehog-induced phenotypes. Hedgehog signaling induced expression of a dominant negative isoform of TCF7L2 (dnTCF7L2) in interzone progeny, which may account for the selective regulation of beta-catenin target genes observed. Knockdown of TCF7L2 isoforms in mouse chondrocytes rescued hedgehog signaling-induced Fgf18 downregulation, while overexpression of the human dnTCF7L2 orthologue (dnTCF4) in human chondrocytes promoted the expression of catabolic enzymes associated with OA. Similarly, expression of dnTCF4 in human chondrocytes positively correlated with the aggrecanase ADAMTS4. Consistent with our developmental findings, activation of beta-catenin also attenuated hedgehog-induced or surgically induced articular cartilage degeneration in mouse models of OA. Thus, our results demonstrate that hedgehog inhibits selective beta-catenin target gene expression to direct interzone progeny fates and articular cartilage development and disease. Moreover, agents that increase beta-catenin activity have the potential to therapeutically attenuate articular cartilage degeneration as part of OA.
机译:WNT/β-连环蛋白和刺猬信号通路在骨关节炎 (OA) 中肢体发育、软骨细胞分化和关节软骨退化的调节中都很重要。目前尚不清楚这些信号通路如何在区间细胞分化和滑膜关节形态发生中相互作用。在这里,我们确定刺猬信号传导的组成型激活在区间细胞内通过选择性抑制 β-连环蛋白诱导的 Fgf18 表达来诱导关节形态变化。稳定β-连环蛋白或用FGF18治疗可挽救刺猬诱导的表型。Hedgehog 信号转导诱导了 TCF7L2 显性负亚型 (dnTCF7L2) 在跨区后代中的表达,这可能解释了观察到的 β-连环蛋白靶基因的选择性调控。在小鼠软骨细胞中敲除 TCF7L2 亚型挽救了刺猬信号诱导的 Fgf18 下调,而人软骨细胞中人 dnTCF7L2 直系同源物 (dnTCF4) 的过表达促进了与 OA 相关的分解代谢酶的表达。同样,dnTCF4 在人软骨细胞中的表达与聚集聚糖酶ADAMTS4呈正相关。与我们的发育发现一致,β-连环蛋白的激活也减弱了OA小鼠模型中刺猬诱导或手术诱导的关节软骨变性。因此,我们的结果表明,刺猬抑制选择性β-连环蛋白靶基因表达,以指导区间后代命运和关节软骨发育和疾病。此外,增加β-连环蛋白活性的药物有可能在治疗上减轻关节软骨变性,作为OA的一部分。

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