Dlx3泛素化对小鼠牙本质形成至关重要

Q3 Dentistry
H. Zheng, J. Fu, Z. Chen, G. Yang, G. Yuan
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引用次数: 7

摘要

牙本质是牙齿的主要矿化成分。成牙本质细胞负责牙本质基质的合成和分泌。此前,在细胞培养系统中已经证明,E3泛素连接酶,小鼠双分钟2 (Mdm2),通过泛素化p53和成牙细胞特异性底物Dlx3,促进小鼠牙乳头细胞(mDPCs)的成牙细胞样分化。然而,Mdm2在体内是否在成牙本质分化和牙本质形成中发挥重要作用尚不清楚。本研究采用Dmp1-Cre;Mdm2 flox/flox小鼠,结合多种组织学和分子生物学方法研究Mdm2在体内的功能。结果表明,成牙髓细胞层Mdm2缺失导致成牙髓细胞分化和牙本质形成缺陷。出乎意料的是,注射小分子抑制剂Nutlin-3a对野生型小鼠Mdm2-p53轴的特异性抑制表明,Mdm2在牙本质形成中的作用是不依赖于p53的,这与之前的体外研究不一致。原位接近结扎实验(PLA)显示Mdm2与Dlx3相互作用并泛素化小鼠磨牙成牙细胞核。Dlx3促进Mdm2向细胞核易位,核Mdm2介导Dlx3泛素化,促进mDPCs向成牙细胞样分化。Dlx3通过其c端结构域与Mdm2相互作用。Dlx3的c端结构域缺失逆转了野生型或核Mdm2过表达介导的成牙细胞样分化增强和Dspp启动子激活。我们的研究结果表明,核Mdm2介导转录因子Dlx3的泛素化,这对于Dlx3在Dspp上的转录活性以及随后的成牙本质分化和牙本质形成至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dlx3 Ubiquitination by Nuclear Mdm2 Is Essential for Dentinogenesis in Mice
Dentin is a major mineralized component of teeth. Odontoblasts are responsible for synthesis and secretion of dentin matrix. Previously, it has been demonstrated in a cell culture system that the E3 ubiquitin ligase, murine double minute 2 (Mdm2), promotes odontoblast-like differentiation of mouse dental papilla cells (mDPCs) by ubiquitinating p53 and the odontoblast-specific substrate Dlx3. However, whether Mdm2 plays an essential role in vivo in odontoblast differentiation and dentin formation remains unknown. In this study, we investigated the in vivo functions of Mdm2 using Dmp1-Cre;Mdm2 flox/flox mice combined with multiple histological and molecular biological methods. The results showed that Mdm2 deletion in the odontoblast layer led to defects in odontoblast differentiation and dentin formation. Unexpectedly, specific inhibition of the Mdm2-p53 axis in wild-type mice by injection of a small-molecule inhibitor Nutlin-3a indicated that the role of Mdm2 in dentinogenesis was p53 independent, which was inconsistent with the previous in vitro study. In situ proximity ligation assay (PLA) showed that Mdm2 interacted with and ubiquitinated Dlx3 in the odontoblast nucleus of mouse molars. Dlx3 promoted the translocation of Mdm2 to the nucleus, and in turn, the nuclear Mdm2 mediated ubiquitination of Dlx3 and promoted the odontoblast-like differentiation of mDPCs. Dlx3 interacted with Mdm2 through its C-terminal domain. Deletion of the C-terminal domain of Dlx3 reversed the enhanced odontoblast-like differentiation and the activation of Dspp promoter mediated by overexpression of wild-type or nuclear Mdm2. Our findings suggest that nuclear Mdm2 mediates ubiquitination of the transcription factor Dlx3, which is essential for Dlx3 transcriptional activity on Dspp as well as subsequent odontoblast differentiation and dentin formation.
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来源期刊
Indian Journal of Dental Research
Indian Journal of Dental Research Dentistry-Dentistry (all)
CiteScore
1.80
自引率
0.00%
发文量
80
审稿时长
38 weeks
期刊介绍: Indian Journal of Dental Research (IJDR) is the official publication of the Indian Society for Dental Research (ISDR), India section of the International Association for Dental Research (IADR), published quarterly. IJDR publishes scientific papers on well designed and controlled original research involving orodental sciences. Papers may also include reports on unusual and interesting case presentations and invited review papers on significant topics.
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