The transcription factor mohawk homeobox regulates homeostasis of the periodontal ligament.
Naoki KodaTempei SatoMasahiro ShinoharaShizuko IchinoseYoshiaki ItoRyo NakamichiTomohiro KayamaKensuke KataokaHidetsugu SuzukiKeiji MoriyamaHiroshi AsaharaPublished in: Development (Cambridge, England) (2016)
The periodontal ligament (PDL), which connects the teeth to the alveolar bone, is essential for periodontal tissue homeostasis. Although the significance of the PDL is recognized, molecular mechanisms underlying PDL function are not well known. We report that mohawk homeobox (Mkx), a tendon-specific transcription factor, regulates PDL homeostasis by preventing its degeneration. Mkx is expressed in the mouse PDL at the age of 10 weeks and expression remained at similar levels at 12 months. In Mkx-/- mice, age-dependent expansion of the PDL at the maxillary first molar (M1) furcation area was observed. Transmission electron microscopy (TEM) revealed that Mkx-/- mice presented collagen fibril degeneration in PDL with age, while the collagen fibril diameter gradually increased in Mkx+/+ mice. PDL cells lost their shape in Mkx-/- mice, suggesting changes in PDL properties. Microarray and quantitative polymerase chain reaction (qPCR) analyses of Mkx-/- PDL revealed an increase in osteogenic gene expression and no change in PDL- and inflammatory-related gene expression. Additionally, COL1A1 and COL1A2 were upregulated in Mkx-overexpressing human PDL fibroblasts, whereas osteogenic genes were downregulated. Our results indicate that Mkx prevents PDL degeneration by regulating osteogenesis.
Keyphrases
- gene expression
- transcription factor
- type diabetes
- mesenchymal stem cells
- high fat diet induced
- dna methylation
- poor prognosis
- endothelial cells
- high resolution
- adipose tissue
- long non coding rna
- skeletal muscle
- dna binding
- single molecule
- drug induced
- bone mineral density
- cell cycle arrest
- wild type
- pi k akt
- anterior cruciate ligament reconstruction
- induced pluripotent stem cells