首页> 美国卫生研究院文献>The Journal of Biological Chemistry >α-Catenin Inhibits β-Catenin-T-cell Factor/Lymphoid Enhancing Factor Transcriptional Activity and Collagen Type II Expression in Articular Chondrocytes through Formation of Gli3R·α-Catenin·β-Catenin Ternary Complex
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α-Catenin Inhibits β-Catenin-T-cell Factor/Lymphoid Enhancing Factor Transcriptional Activity and Collagen Type II Expression in Articular Chondrocytes through Formation of Gli3R·α-Catenin·β-Catenin Ternary Complex

机译:α-连环蛋白通过形成Gli3R·α-连环蛋白·β-连环蛋白三元复合物抑制关节软骨细胞中β-连环蛋白-T细胞因子/淋巴增强因子的转录活性和Ⅱ型胶原表达

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摘要

Chondrocytes, a unique cell type in cartilage tissue, are responsible for the regulation of anabolic and catabolic homeostasis in cartilage-specific extracellular matrix synthesis. Activation of Wnt/β-catenin signaling induces dedifferentiation of articular chondrocytes, resulting in suppression of type II collagen expression. We have shown previously that α-catenin inhibits β-catenin-Tcf/Lef (T-cell factor/lymphoid-enhancing factor) transcriptional activity in articular chondrocytes with a concomitant recovery of type II collagen expression. In the current study, we elucidated the mechanism underlying this inhibition of β-catenin-Tcf/Lef transcriptional activity by α-catenin, showing that it requires direct interaction between α-catenin and β-catenin. We further showed that it involves recruitment of Gli3R, the short transcription-repressing form of the transcription factor Gli3, to β-catenin by α-catenin. The resulting inhibition of β-catenin transcriptional activity leads to increased expression of type II collagen. Gli3R and α-catenin actions are co-dependent: both are necessary for the observed inhibitory effects on β-catenin transcriptional activity. Reducing Gli3R expression levels through activation of Indian Hedgehog (Ihh) signaling also is sufficient to activate β-catenin transcriptional activity, suggesting that the ternary complex, Gli3R·α-catenin·β-catenin, mediates Ihh-dependent activation of Wnt/β-catenin signaling in articular chondrocytes. Collectively, this study shows that α-catenin functions as a nuclear factor that recruits the transcriptional repressor Gli3R to β-catenin to inhibit β-catenin transcriptional activity and dedifferentiation of articular chondrocytes. Finally, osteoarthritic cartilage showed elevated levels of β-catenin and decreased levels of α-catenin and Gli3R, suggesting that decreased levels of α-catenin and Gli3R levels contribute to increased β-catenin transcriptional activity during osteoarthritic cartilage destruction.
机译:软骨细胞是软骨组织中的一种独特细胞类型,负责调节软骨特异性细胞外基质合成中的合成代谢和分解代谢稳态。 Wnt /β-catenin信号的激活诱导关节软骨细胞去分化,从而抑制II型胶原蛋白的表达。先前我们已经表明,α-catenin抑制关节软骨细胞中的β-catenin-Tcf/ Lef(T细胞因子/淋巴增强因子)转录活性,并伴有II型胶原蛋白表达的恢复。在当前的研究中,我们阐明了α-catenin抑制β-catenin-Tcf/ Lef转录活性的潜在机制,表明它需要α-catenin和β-catenin之间的直接相互作用。我们进一步表明,它涉及通过α-catenin将Gli3R(转录因子Gli3的短转录抑制形式)募集到β-catenin。对β-连环蛋白转录活性的最终抑制导致II型胶原蛋白的表达增加。 Gli3R和α-catenin的作用是相互依赖的:两者对于观察到的对β-catenin转录活性的抑制作用都是必需的。通过激活印度刺猬(Ihh)信号降低Gli3R表达水平也足以激活β-catenin转录活性,这表明三元复合物Gli3R·α-catenin·β-catenin介导了Wht /β-的Ihh依赖性激活。关节软骨细胞中的连环蛋白信号传导。总的来说,这项研究表明,α-catenin作为一种核因子,将转录阻遏物Gli3R募集到β-catenin,以抑制β-catenin的转录活性和关节软骨细胞的去分化。最后,骨关节炎软骨显示β-catenin水平升高而α-catenin和Gli3R水平降低,表明α-catenin和Gli3R水平降低有助于骨关节炎软骨破坏期间β-catenin转录活性的增加。

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