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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Crucial roles of canonical Runx2-dependent pathway on Wnt1-induced osteoblastic differentiation of human periodontal ligament fibroblasts
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Crucial roles of canonical Runx2-dependent pathway on Wnt1-induced osteoblastic differentiation of human periodontal ligament fibroblasts

机译:经典的Runx2依赖途径在Wnt1诱导人牙周膜成纤维细胞成骨细胞分化中的重要作用

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Canonical Wnt signaling is thought to enhance osteogenic differentiation of human periodontal ligament fibroblasts (hPLFs). However, the mechanism of this enhancement has not yet been defined. We investigated the effects of Wnt1 on osteoblast differentiation of hPLFs and explored the mechanisms of the effects. Treating hPLFs with Wnt1 induced cytosolic accumulation and nuclear translocation of beta-catenin with concomitant increases in alkaline phosphatase (ALP) activity and calcium content in a time-dependent and dose-dependent manner. Wnt1-stimulated differentiation of hPLFs was accompanied by augmented phosphorylation of glycogen synthase kinase (GSK)-3 beta and expression of the bone-specific factors runt-related transcription factor 2 (Runx2), osterix2 (Osx2), ALP, type I collagen, osteopontin, and osteocalcin. Pretreatment with Dickkopf-1 inhibited Wnt1-stimulated differentiation of hPLFs by suppressing GSK-3 beta phosphorylation, nuclear translocation of beta-catenin, and expression of the bone-specific factors. Small interfering (si) RNA-mediated knockdown of beta-catenin, or pretreatment with FH535, markedly prevented Wnt1-stimulated differentiation of cells by blocking Runx2 and its downstream factors at the mRNA and protein levels. siRNA-mediated silencing of Runx2 also inhibited Wnt1-stimulated mineralization of cells, accompanied by a reduction in the levels of Osx2 and other early and late bone-formation regulatory factors. However, Wnt1-mediated nuclear translocation of beta-catenin and GSK-3 beta phosphorylation were not inhibited by knockdown of Runx2 or FH535. Collectively, our findings suggested that Wnt1 stimulates osteogenic differentiation and mineralization of hPLFs, mainly by activating the canonical Wnt/beta-catenin pathway, in which Runx2 is a key downstream regulator.
机译:规范的Wnt信号被认为可以增强人牙周膜成纤维细胞(hPLFs)的成骨分化。但是,这种增强的机制尚未定义。我们调查了Wnt1对hPLFs成骨细胞分化的影响,并探讨了其作用机理。用Wnt1诱导hPLFs引起的胞浆蓄积和β-catenin的核易位伴随着碱性磷酸酶(ALP)活性和钙含量的增加,呈时间依赖性和剂量依赖性。 Wnt1刺激的hPLFs分化伴随着糖原合酶激酶(GSK)-3β磷酸化的增强以及骨特异性因子矮子相关转录因子2(Runx2),osterix2(Osx2),ALP,I型胶原,骨桥蛋白和骨钙素。用Dickkopf-1预处理可通过抑制GSK-3β磷酸化,β-catenin的核易位以及骨特异性因子的表达来抑制Wnt1刺激的hPLFs分化。小干扰(si)RNA介导的β-连环蛋白的敲低或FH535的预处理通过在mRNA和蛋白质水平上阻断Runx2及其下游因子,明显阻止了Wnt1刺激的细胞分化。 siRNA介导的Runx2沉默也抑制Wnt1刺激的细胞矿化,同时降低Osx2和其他早期和晚期骨形成调节因子的水平。但是,Runx2或FH535的敲低不会抑制Wnt1介导的β-catenin核转运和GSK-3β磷酸化。总的来说,我们的研究结果表明Wnt1刺激hPLFs的成骨分化和矿化作用,主要是通过激活经典的Wnt /β-catenin途径,其中Runx2是关键的下游调节剂。

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