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Conditional activation of β-catenin signaling in mice leads to severe defects in intervertebral disc tissue

机译:小鼠中β-catenin信号的条件激活导致椎间盘组织严重缺陷

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Objective The incidence of low back pain is extremely high and is often linked to intervertebral disc (IVD) degeneration. The mechanism of this disease is currently unknown. This study was undertaken to investigate the role of β-catenin signaling in IVD tissue function. Methods β-catenin protein levels were measured by immunohistochemical analysis of disc samples obtained from patients with disc degeneration and from normal subjects. To generate β-catenin conditional activation (cAct) mice, Col2a1-CreER T2-transgenic mice were bred with β-catenin fx(Ex3)/fx(Ex3) mice. Changes in disc tissue morphology and function were examined by micro-computed tomography, histologic analysis, and real-time polymerase chain reaction assays. Results β-catenin protein was up-regulated in disc tissue samples from patients with disc degeneration. To assess the effects of increased β-catenin levels on disc tissue, we generated β-catenin cAct mice. Overexpression of β-catenin in disc cells led to extensive osteophyte formation in 3- and 6-month-old β-catenin cAct mice, which were associated with significant changes in the cells and extracellular matrix of disc tissue and growth plate. Gene expression analysis demonstrated that activation of β-catenin enhanced runt-related transcription factor 2-dependent Mmp13 and Adamts5 expression. Moreover, genetic ablation of Mmp13 or Adamts5 on the β-catenin cAct background, or treatment of β-catenin cAct mice with a specific matrix metalloproteinase 13 inhibitor, ameliorated the mutant phenotype. Conclusion Our findings indicate that the β-catenin signaling pathway plays a critical role in disc tissue function.
机译:目的下腰痛的发生率极高,通常与椎间盘退变有关。目前尚不清楚该疾病的机制。进行这项研究以研究β-catenin信号在IVD组织功能中的作用。方法通过免疫组化分析从椎间盘退变患者和正常人获得的椎间盘样本,测定β-catenin蛋白水平。为了生成β-catenin条件激活(cAct)小鼠,将Col2a1-CreER T2转基因小鼠与β-cateninfx(Ex3)/ fx(Ex3)小鼠进行繁殖。通过微计算机断层扫描,组织学分析和实时聚合酶链反应测定法检查了椎间盘组织形态和功能的变化。结果椎间盘退变患者椎间盘组织样品中β-catenin蛋白表达上调。为了评估β-catenin水平升高对椎间盘组织的影响,我们生成了β-catenincAct小鼠。 β-catenin在椎间盘细胞中的过度表达导致3个月和6个月大的β-catenincAct小鼠中形成大量骨赘,这与椎间盘组织和生长板的细胞和细胞外基质的显着变化有关。基因表达分析表明,β-catenin的激活增强了矮子相关转录因子2依赖性Mmp13和Adamts5的表达。此外,在β-catenincAct背景上进行Mmp13或Adamts5的遗传消融,或用特定的基质金属蛋白酶13抑制剂治疗β-catenincAct小鼠,可改善突变表型。结论我们的发现表明,β-catenin信号通路在椎间盘组织功能中起关键作用。

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