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BMP4 在出生后牙齿细胞分化中的新作用和作用机制。

New roles and mechanism of action of BMP4 in postnatal tooth cytodifferentiation.

机构信息

The University of Texas Health Science Center at San Antonio, San Antonio, TX 78229-3900, USA.

出版信息

Bone. 2010 Jun;46(6):1533-45. doi: 10.1016/j.bone.2010.02.024. Epub 2010 Mar 3.

Abstract

During the phase of overt tooth cytodifferentiation that occurs after birth in the mouse and using the 3.6Collagen1a-Cre and the BMP4 floxed and BMP4 knockout mice, the BMP4 gene was deleted in early collagen producing odontoblasts around postnatal day 1. BMP4 expression was reduced over 90% in alveolar osteoblasts and odontoblasts. There was decreased rate of predentin to dentin formation and decreased mature odontoblast differentiation reflected in reduced DMP1 expression and proper dentinal tubule formation, as well as reduced Collagen type I and Osteocalcin expression. We observed mutant dysmorphogenic odontoblasts that failed to properly elongate and differentiate. The consequence of this failed differentiation process leads to permanent loss of dentin thickness, apparent enlarged pulp chambers in the molars and reduced bone supporting the tooth structures in mice as old as 10-12 months. Deletion of the BMP4 gene in odontoblasts also indirectly disrupted the process of enamel formation that persisted throughout life. The mechanism for this altered differentiation program in the absence of the BMP4 gene in odontoblasts is from decreased BMP signaling, and decreased expression of three key transcription factors, Dlx3, Dlx5, and Osterix. BMP signaling, as well as Dlx3 and Amelogenin expression, is also indirectly reduced in the ameloblasts of the odontoblast BMP4 cKO mice. This supports a key paracrine or endocrine postnatal role of odontoblast derived BMP4 on the proper amelogenesis and formation of the enamel.

摘要

在出生后小鼠的牙细胞明显分化阶段,使用 3.6Collagen1a-Cre 和 BMP4 基因敲除和 floxed 小鼠,BMP4 基因在出生后第 1 天的早期胶原产生成牙本质细胞中被删除。BMP4 在牙槽骨成骨细胞和成牙本质细胞中的表达减少了 90%以上。釉质形成的前期牙本质向牙本质的形成速度降低,成熟牙本质细胞分化减少,表现为 DMP1 表达减少,适当的牙本质小管形成减少,以及Ⅰ型胶原和骨钙素表达减少。我们观察到突变的畸形牙本质细胞不能正常伸长和分化。这种分化失败的后果导致牙本质厚度永久丧失,磨牙的牙髓腔明显增大,以及 10-12 个月大的小鼠牙齿结构的支撑骨减少。成牙本质细胞中 BMP4 基因的缺失也间接破坏了一生中持续进行的釉质形成过程。在成牙本质细胞中缺乏 BMP4 基因的情况下,这种分化程序改变的机制是 BMP 信号转导减少,以及三个关键转录因子 Dlx3、Dlx5 和 Osterix 的表达减少。BMP 信号转导以及 Dlx3 和牙釉蛋白的表达在成牙本质细胞 BMP4 基因敲除小鼠的成釉细胞中也间接减少。这支持了牙本质细胞来源的 BMP4 在釉质形成和牙釉质形成中的旁分泌或内分泌的关键作用。

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本文引用的文献

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