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Antagonistic interaction between Ezh2 and Arid1a coordinates root patterning and development via Cdkn2a in mouse molars

机译:Ezh2和Arid1a之间的拮抗相互作用通过Cdkn2a协调小鼠磨牙中的根部模式和发育

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摘要

Patterning is a critical step during organogenesis and is closely associated with the physiological function of organs. Tooth root shapes are finely tuned to provide precise occlusal support to facilitate the function of each tooth type. However, the mechanism regulating tooth root patterning and development is largely unknown. In this study, we provide the first in vivo evidence demonstrating that Ezh2 in the dental mesenchyme determines patterning and furcation formation during dental root development in mouse molars. Mechanistically, an antagonistic interaction between epigenetic regulators Ezh2 and Arid1a controls Cdkn2a expression in the dental mesenchyme to regulate dental root patterning and development. These findings indicate the importance of balanced epigenetic regulation in determining the tooth root pattern and the integration of roots with the jaw bones to achieve physiological function. Collectively, our study provides important clues about the regulation of organogenesis and has general implications for tooth regeneration in the future.
机译:模式化是器官发生过程中的关键步骤,并且与器官的生理功能密切相关。牙根的形状经过微调,以提供精确的咬合支持,以促进每种牙齿类型的功能。但是,调节齿根构图和发育的机制很大程度上未知。在这项研究中,我们提供了第一个体内证据,证明牙间充质中的Ezh2决定了小鼠磨牙的牙根发育过程中的模式和分叉形成。从机理上讲,表观遗传调节剂Ezh2和Arid1a之间的拮抗相互作用控制了牙齿间充质中Cdkn2a的表达,从而调节了牙根的形态和发育。这些发现表明平衡表观遗传调节在确定牙根形态以及牙根与颌骨整合以实现生理功能方面的重要性。总的来说,我们的研究提供了有关器官发生调控的重要线索,并对将来的牙齿再生具有一般意义。

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