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SMAD4-mediated WNT signaling controls the fate of cranial neural crest cells during tooth morphogenesis

机译:SMAD4介导的WNT信号控制牙齿形态发生过程中颅神经rest细胞的命运

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摘要

TGFβ/BMP signaling regulates the fate of multipotential cranial neural crest (CNC) cells during tooth and jawbone formation as these cells differentiate into odontoblasts and osteoblasts, respectively. The functional significance of SMAD4, the common mediator of TGFβ/BMP signaling, in regulating the fate of CNC cells remains unclear. In this study, we investigated the mechanism of SMAD4 in regulating the fate of CNC-derived dental mesenchymal cells through tissue-specific inactivation of Smad4. Ablation of Smad4 results in defects in odontoblast differentiation and dentin formation. Moreover, ectopic bone-like structures replaced normal dentin in the teeth of Osr2-IresCre;Smad4fl/fl mice. Despite the lack of dentin, enamel formation appeared unaffected in Osr2-IresCre;Smad4fl/fl mice, challenging the paradigm that the initiation of enamel development depends on normal dentin formation. At the molecular level, loss of Smad4 results in downregulation of the WNT pathway inhibitors Dkk1 and Sfrp1 and in the upregulation of canonical WNT signaling, including increased β-catenin activity. More importantly, inhibition of the upregulated canonical WNT pathway in Osr2-IresCre;Smad4fl/fl dental mesenchyme in vitro partially rescued the CNC cell fate change. Taken together, our study demonstrates that SMAD4 plays a crucial role in regulating the interplay between TGFβ/BMP and WNT signaling to ensure the proper CNC cell fate decision during organogenesis.
机译:TGFβ/ BMP信号调节牙齿和颚骨形成过程中多能颅神经c(CNC)细胞的命运,因为这些细胞分别分化为成牙本质细胞和成骨细胞。 TADβ/ BMP信号的共同介导物SMAD4在调节CNC细胞命运方面的功能意义尚不清楚。在这项研究中,我们调查了SMAD4通过Smad4的组织特异性失活来调节CNC衍生的牙齿间充质细胞命运的机制。 Smad4的消融导致成牙本质细胞分化和牙本质形成缺陷。此外,异位骨样结构替代了Osr2-IresCre; Smad4 fl / fl 小鼠牙齿中的正常牙本质。尽管缺少牙本质,但在Osr2-IresCre; Smad4 fl / fl 小鼠中牙釉质的形成似乎并未受到影响,这挑战了牙釉质发育的启动取决于正常牙本质形成的范式。在分子水平上,Smad4的缺失导致WNT途径抑制剂Dkk1和Sfrp1的下调,以及经典WNT信号的上调,包括增加的β-catenin活性。更重要的是,在体外抑制Osr2-IresCre; Smad4 fl / fl 牙间充质中的经典WNT途径可以部分挽救CNC细胞的命运变化。两者合计,我们的研究表明,SMAD4在调节TGFβ/ BMP和WNT信号之间的相互作用,以确保器官发生过程中正确的CNC细胞命运决定中起着至关重要的作用。

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