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Alteration of Notch signaling in skeletal development and disease

机译:骨骼发育与疾病中缺口信号传导的改变

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Notch signaling is an evolutionarily conserved mechanism for specifying and regulating organogenesis and tissue renewal. Human and mouse genetic studies have demonstrated mutations in many components of the Notch signaling pathway that cause skeletal patterning defects. More recently, the in vivo effects of Notch signaling on osteoblast specification, proliferation, and differentiation have been demonstrated in addition to its regulation of osteoclast activity. However, while our understanding of canonical Notch signaling in skeletal biology is rapidly evolving, the role of noncanonical Notch signaling is still poorly understood. In a pathologic context, aberration of Notch signaling is also associated with osteosarcoma. These studies raise the question of how Notch may interact with other signaling pathways, such as Wnt. Finally, manipulation of Notch signaling for bone-related diseases remains complex because of the temporal and context-dependent nature of Notch signaling during mesenchymal stem cell and osteoblast differentiation.
机译:Notch信号是用于指定和调节器官发生和组织续期的进化上保守的机制。人类和小鼠基因研究已经证明,在缺口的许多组分突变信号通路是导致骨骼图案的缺陷。最近,对成骨细胞说明书中,增殖和分化Notch信号的体内作用已被证明除了其破骨细胞活性的调节。然而,尽管我们的骨骼生物学规范Notch信号的理解正在迅速发展,非规范Notch信号的作用仍然知之甚少。在病理情况下,Notch信号的像差也与骨肉瘤相关联。这些研究提出的缺口可以如何与其他信号通路,如Wnt信号进行交互的问题。最后,Notch信号对骨有关的疾病,因为操纵的间充质干细胞和成骨细胞分化过程中的Notch信号传导的时间和依赖于上下文的性质仍然复杂。

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