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首页> 外文期刊>Biology Direct >Ablation of Fam20c causes amelogenesis imperfecta via inhibiting Smad dependent BMP signaling pathway
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Ablation of Fam20c causes amelogenesis imperfecta via inhibiting Smad dependent BMP signaling pathway

机译:通过抑制Smad依赖性BMP信号通路使FAM20C的消融使Amelogesis渗透产生

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Amelogenesis imperfecta (AI) is a type of hereditary diseases that manifest defects in the formation or mineralization of enamel. Recently, it is reported that inactivation of FAM20C, a well-known Golgi casein kinase, caused AI. However, the mechanism of it is still unknown. The aim of this study was to explore the molecular mechanism of AI, which caused by ablation of FAM20C. In the Sox2-Cre;Fam20Cfl/fl (cKO) mouse, we found abnormal differentiation of ameloblasts, improper formation and mineralization of enamel, and downregulation of both mRNA and protein level of enamel matrix proteins, including amelogenin (AMEL), ameloblastin (AMBN) and enamelin (ENAM). The levels of BMP2, BMP4 and BMP7, the ligands of BMP signaling pathway, and phosphorylation of Smad1/5/8, the key regulators of BMP signaling pathway, were all decreased in the enamel matrix and the ameloblast of the cKO mice, respectively. The expression of cyclin-dependent kinase inhibitor (P21), muscle segment homeobox genes 2 (Msx2), which are the target genes of the BMP signaling pathway, and laminin 3, the downstream factor of Msx2, were all significantly decreased in the ameloblasts of the cKO mice compared to the control mice. the results of our study suggest that ablation of FAM20C leads to AI through inhibiting the Smad dependent BMP signaling pathway in the process of amelogenesis.
机译:Amelogesesis Imperfecta(AI)是一种遗传性疾病,可在牙釉质的形成或矿化中表现出缺陷。最近,据报道,FAM20C的灭活是一种众所周知的高尔基酪蛋白激酶,导致AI。但是,它的机制仍然是未知的。本研究的目的是探讨AI的分子机制,由烧蚀FAM20C引起的。在SOX2-CRE; FAM20CFL / FL(CKO)小鼠中,我们发现了搪瓷的异常分化,牙釉质的不正确的形成和矿化,以及牙釉质基质蛋白的mRNA和蛋白质水平的下调,包括Amelogenin(Amel),Ameloblastin(Ambn )和enamelin(enam)。 BMP2,BMP4和BMP7,BMP信号传导途径的配体的水平,SMP信号通路的关键调节剂的SMAD1 / 5/8的磷酸化分别在牙釉质基质和CKO小鼠的Ameloblast中均降低。基蛋白依赖性激酶抑制剂(P21)的表达,肌肉段Homeobox基因2(MSX2),其是BMP信号传导途径的靶基因,以及MSX2的下游系数,在Ameloblast中均显着降低CKO小鼠与对照小鼠相比。我们的研究结果表明,FAM20C的消融通过抑制AMELO发生过程中的SMAD依赖性BMP信号通路来引发AI。

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