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Pax9与Msx1基因相互作用在正常及异常牙齿发育中的功能后果

Functional consequences of interactions between Pax9 and Msx1 genes in normal and abnormal tooth development.

作者信息

Ogawa Takuya, Kapadia Hitesh, Feng Jian Q, Raghow Rajendra, Peters Heiko, D'Souza Rena N

机构信息

Department of Orthodontics, University of Texas Health Science Center at Houston-Dental Branch, Houston, Texas 77030, USA.

出版信息

J Biol Chem. 2006 Jul 7;281(27):18363-9. doi: 10.1074/jbc.M601543200. Epub 2006 May 1.


DOI:10.1074/jbc.M601543200
PMID:16651263
Abstract

Pax9 and Msx1 encode transcription factors that are known to be essential for the switch in odontogenic potential from the epithelium to the mesenchyme. Multiple lines of evidence suggest that these molecules play an important role in the maintenance of mesenchymal Bmp4 expression, which ultimately drives morphogenesis of the dental organ. Here we demonstrate that Pax9 is able to directly regulate Msx1 expression and interact with Msx1 at the protein level to enhance its ability to transactivate Msx1 and Bmp4 expression during tooth development. In addition, we tested how a missense mutation (T62C) in the paired domain of PAX9 that is responsible for human tooth agenesis (1) affects its functions. Our data indicate that although the mutant Pax9 protein (L21P) can bind to the Msx1 protein, it fails to transactivate the Msx1 and Bmp4 promoter, presumably because of its inability to bind cognate paired domain recognition sequences. In addition, synergistic transcriptional activation of the Bmp4 promoter was lost with coexpression of mutant Pax9 and wild-type Msx1. This suggests that Pax9 is critical for the regulation of Bmp4 expression through its paired domain rather than Msx1. Our findings demonstrate the partnership of Pax9 and Msx1 in a signaling pathway that involves Bmp4. Furthermore, the regulation of Bmp4 expression by the interaction of Pax9 with Msx1 at the level of transcription and through formation of a protein complex determines the fate of the transition from bud to cap stage during tooth development.

摘要

Pax9和Msx1编码转录因子,已知这些转录因子对于牙源性潜能从上皮细胞向间充质细胞的转换至关重要。多条证据表明,这些分子在维持间充质Bmp4表达中发挥重要作用,而间充质Bmp4表达最终驱动牙器官的形态发生。在此,我们证明Pax9能够直接调节Msx1表达,并在蛋白质水平与Msx1相互作用,以增强其在牙齿发育过程中转录激活Msx1和Bmp4表达的能力。此外,我们测试了PAX9配对结构域中导致人类牙齿缺失的错义突变(T62C)如何影响其功能。我们的数据表明,尽管突变型Pax9蛋白(L21P)能够与Msx1蛋白结合,但它无法转录激活Msx1和Bmp4启动子,推测这是因为它无法结合同源配对结构域识别序列。此外,突变型Pax9与野生型Msx1共表达时,Bmp4启动子的协同转录激活作用丧失。这表明Pax9通过其配对结构域而非Msx1对Bmp4表达的调节至关重要。我们的研究结果证明了Pax9和Msx1在涉及Bmp4的信号通路中的协同作用。此外,Pax9与Msx1在转录水平相互作用并通过形成蛋白质复合物对Bmp4表达的调节决定了牙齿发育过程中从芽期到帽状期转变的命运。

相似文献

[1]
Functional consequences of interactions between Pax9 and Msx1 genes in normal and abnormal tooth development.

J Biol Chem. 2006-7-7

[2]
Msx1 mutations: how do they cause tooth agenesis?

J Dent Res. 2011-3

[3]
Regulation of bmp4 expression in odontogenic mesenchyme: from simple to complex.

Cells Tissues Organs. 2011-5-6

[4]
Genetic interactions between Pax9 and Msx1 regulate lip development and several stages of tooth morphogenesis.

Dev Biol. 2010-2-1

[5]
Pathogenic mechanisms of tooth agenesis linked to paired domain mutations in human PAX9.

Hum Mol Genet. 2009-8-1

[6]
Osr2 acts downstream of Pax9 and interacts with both Msx1 and Pax9 to pattern the tooth developmental field.

Dev Biol. 2011-3-17

[7]
Genes affecting tooth morphogenesis.

Orthod Craniofac Res. 2007-8

[8]
Genes affecting tooth morphogenesis.

Orthod Craniofac Res. 2007-11

[9]
Differentiation of Odontoblast-Like Cells From Mouse Induced Pluripotent Stem Cells by Pax9 and Bmp4 Transfection.

Stem Cells Transl Med. 2015-9

[10]
Msx1 and Tbx2 antagonistically regulate Bmp4 expression during the bud-to-cap stage transition in tooth development.

Development. 2013-5-29

引用本文的文献

[1]
The dominant negative mutation of PAX9 in nonsyndromic tooth agenesis.

Clin Oral Investig. 2025-4-14

[2]
Association between or gene polymorphism and tooth agenesis risk: A meta-analysis.

Open Life Sci. 2025-4-10

[3]
Upregulation and functional roles of miR-450b in canine oral melanoma.

Noncoding RNA Res. 2024-2-1

[4]
Regulation of otic neurosensory specification by Notch and Wnt signalling: insights from RNA-seq screenings in the embryonic chicken inner ear.

Front Cell Dev Biol. 2023-10-12

[5]
Count Me in, Count Me out: Regulation of the Tooth Number via Three Directional Developmental Patterns.

Int J Mol Sci. 2023-10-11

[6]
Harnessing the dental cells derived from human induced pluripotent stem cells for hard tissue engineering.

J Adv Res. 2024-7

[7]
Genetic/Protein Association of Atopic Dermatitis and Tooth Agenesis.

Int J Mol Sci. 2023-3-17

[8]
Tooth number abnormality: from bench to bedside.

Int J Oral Sci. 2023-1-6

[9]
Rethinking the Genetic Etiology of Nonsyndromic Tooth Agenesis.

Curr Osteoporos Rep. 2022-12

[10]
PAX9 Is Involved in Periodontal Ligament Stem Cell-like Differentiation of Human-Induced Pluripotent Stem Cells by Regulating Extracellular Matrix.

Biomedicines. 2022-9-22

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