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褪黑素介导线粒体融合和呼吸功能的苹果酸酶 2 促进牙发育过程中牙本质细胞的分化。

Melatonin-mediated malic enzyme 2 orchestrates mitochondrial fusion and respiratory functions to promote odontoblastic differentiation during tooth development.

机构信息

Hospital of Stomatology, Sun Yat-sen University, Guangzhou, China.

Guangdong Provincial Key Laboratory of Stomatology, Guangzhou, China.

出版信息

J Pineal Res. 2023 May;74(4):e12865. doi: 10.1111/jpi.12865. Epub 2023 Mar 21.

Abstract

Tooth development is a complex process that is tightly controlled by circadian rhythm. Melatonin (MT) is a major hormonal regulator of the circadian rhythm, and influences dentin formation and odontoblastic differentiation during tooth development; however, the underlying mechanism remains elusive. This study investigated how MT regulates odontoblastic differentiation, with a special focus on its regulation of mitochondrial dynamics. In rat dental papilla cells (DPCs), we found that MT promotes odontoblastic differentiation concurrently with enhanced mitochondrial fusion, while disruption of mitochondrial fusion by depleting optic atrophy 1 (OPA1) impairs MT-mediated differentiation and mitochondrial respiratory functions. Through RNA sequencing, we discovered that MT significantly upregulated malic enzyme 2 (ME2), a mitochondrial NAD(P) -dependent enzyme, and identified ME2 as a critical MT downstream effector that orchestrates odontoblastic differentiation, mitochondrial fusion, and respiration functions. By detecting the spatiotemporal expression of ME2 in developing tooth germs, and using tooth germ reconstituted organoids, we also provided in vivo and ex vivo evidence that ME2 promotes dentin formation, indicating a possible involvement of ME2 in MT-modulated tooth development. Collectively, our findings offer novel understandings regarding the molecular mechanism by which MT affects cell differentiation and organogenesis, meanwhile, the critical role of ME2 in MT-regulated mitochondrial functions is also highlighted.

摘要

牙齿发育是一个受昼夜节律严格调控的复杂过程。褪黑素(MT)是昼夜节律的主要激素调节剂,它影响牙齿发育过程中的牙本质形成和成牙本质细胞分化;然而,其潜在机制仍不清楚。本研究探讨了 MT 如何调节成牙本质细胞分化,特别关注其对线粒体动力学的调节。在大鼠牙乳头细胞(DPC)中,我们发现 MT 促进成牙本质细胞分化,同时增强线粒体融合,而通过耗竭光感受器萎缩蛋白 1(OPA1)破坏线粒体融合会损害 MT 介导的分化和线粒体呼吸功能。通过 RNA 测序,我们发现 MT 显著上调了苹果酸酶 2(ME2),一种线粒体 NAD(P) 依赖性酶,并且确定 ME2 是 MT 下游的一个关键效应物,它协调成牙本质细胞分化、线粒体融合和呼吸功能。通过检测 ME2 在发育中的牙胚中的时空表达,并使用牙胚重建类器官,我们还提供了体内和体外证据,表明 ME2 促进牙本质形成,表明 ME2 可能参与 MT 调节的牙齿发育。总之,我们的研究结果提供了关于 MT 影响细胞分化和器官发生的分子机制的新认识,同时也强调了 ME2 在 MT 调节的线粒体功能中的关键作用。

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