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首页> 外文期刊>The Journal of biological chemistry >An Atypical Canonical Bone Morphogenetic Protein (BMP) Signaling Pathway Regulates Msh Homeobox 1 (Msx1) Expression during Odontogenesis
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An Atypical Canonical Bone Morphogenetic Protein (BMP) Signaling Pathway Regulates Msh Homeobox 1 (Msx1) Expression during Odontogenesis

机译:非典型规范骨形态发生蛋白(BMP)信号通路调节Odontogation期间的MSH Homeobox 1(MSX1)表达

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Bone morphogenetic protein (BMP) signaling plays an essential role in early tooth development, evidenced by disruption of BMP signaling leading to an early arrested tooth development. Despite being a central mediator of BMP canonical signaling pathway, inactivation of Smad4 in dental mesenchyme does not result in early developmental defects. In the current study, we investigated the mechanism of receptor-activated Smads (R-Smads) and Smad4 in the regulation of the odontogenic gene Msx1 expression in the dental mesenchyme. We showed that the canonical BMP signaling is not operating in the early developing tooth, as assessed by failed activation of the BRE-Gal transgenic allele and the absence of phospho-(p)Smad1/5/8-Smad4 complexes. The absence of pSmad1/5/8-Smad4 complex appeared to be the consequence of saturation of Smad4 by pSmad2/3 in the dental mesenchyme as knockdown of Smad2/3 or overexpression of Smad4 led to the formation of pSmad1/5/8-Smad4 complexes and activation of canonical BMP signaling in dental mesenchymal cells. We showed that Smad1/5 but not Smad4 are required for BMP-induced expression of Msx1 in dental mesenchymal cells. We further presented evidence that in the absence of Smad4, BMPs are still able to induce pSmad1/5/8 nuclear translocation and their binding to the Msx1 promoter directly in dental mesenchymal cells. Our results demonstrate the functional operation of an atypical canonical BMP signaling (Smad4-independent and Smad1/5/8-dependent) pathway in the dental mesenchyme during early odontogenesis, which may have general implication in the development of other organs.
机译:骨形态发生蛋白(BMP)信号传导在早期牙齿发育中起着重要作用,通过破坏BMP信号传导的影响,导致早期被捕的牙齿发育。尽管是BMP规范信号传导途径的中央介体,但牙齿间充质中的Smad4的失活不会导致早期发育缺陷。在目前的研究中,我们研究了受体激活的Smads(R-Smads)和Smad4的机制在调节牙科间充质中的牙肠病基因MSX1表达中。我们认为规范BMP信号在早期显影齿中不操作,因为通过BRE-GAL转基因等位基因的激活失败和磷酸 - (P)Smad1 / 5/8-Smad4络合物的缺失评估。没有PSMAD1 / 5/8-SMAD4络合物似乎是SMAD4在牙科间能中SMAD4饱和度的结果,因为SMAD2 / 3的敲低或SMAD4的过表达导致PSMAD1 / 5/8-SMAD4的形成牙科间充质细胞中规范BMP信号传导的复合物和激活。我们展示SMAD1 / 5但不需要SMAD4,但BMP诱导的MSX1在牙科间充质细胞中表达。我们进一步提出了证据表明,在没有SMAD4的情况下,BMP仍然能够直接诱导PSMAD1 / 5/8核转位和它们与MSX1启动子的结合直接在牙科间充质细胞中。我们的结果证明了在早期牙科发生期间牙科间充质细胞间心中的非典型规范BMP信号(Smad4-Indumity和Smad1 / 5/8依赖性)途径的功能操作,这可能在其他器官的发育中具有一般意义。

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