Choi Hwajung, Kim Tak-Heun, Yun Chi-Young, Kim Jung-Wook, Cho Eui-Sic
Cluster for Craniofacial Development and Regeneration Research, Institute of Oral Biosciences, Chonbuk National University School of Dentistry, Jeonju, 561-756, South Korea.
Department of Pediatric Dentistry & Dental Research Institute, School of Dentistry, Seoul National University, 275-1 Yongon-dong, Chongno-gu, Seoul, 110-768, South Korea.
Cell Tissue Res. 2016 Apr;364(1):95-103. doi: 10.1007/s00441-015-2310-9. Epub 2015 Nov 7.
Odontoblasts differentiate from dental mesenchyme during dentin formation and mineralization. However, the molecular mechanisms controlling odontoblast differentiation remain poorly understood. Here, we show that expression of testicular acid phosphatase (ACPT) is restricted in the early stage of odontoblast differentiation in proliferating dental mesenchymal cells and secretory odontoblasts. ACPT is expressed earlier than tissue-nonspecific alkaline phosphatase (TNAP) and partly overlaps with TNAP in differentiating odontoblasts. In MDPC-23 odontoblastic cells, expression of ACPT appears simultaneously with a decrease in β-catenin activity and is abolished with the expression of Phex and Dsp. Knockdown of ACPT in MDPC-23 cells stimulates cell proliferation together with an increase in active β-catenin and cyclin D1. In contrast, the overexpression of ACPT suppresses cell proliferation with a decrease in active β-catenin and cyclin D1. Expression of TNAP, Osx, Phex and Dsp is reduced by knockdown of ACPT but is enhanced by ACPT overexpression. When ACPT is blocked with IgG, alkaline phosphatase activity is inhibited but cell proliferation is unchanged regardless of ACPT expression. These findings suggest that ACPT inhibits cell proliferation through β-catenin-mediated signaling in dental mesenchyme but elicits odontoblast differentiation and mineralization by supplying phosphate during dentin formation. Thus, ACPT might be a novel candidate for inducing odontoblast differentiation and mineralization for dentin regeneration.
成牙本质细胞在牙本质形成和矿化过程中由牙间充质分化而来。然而,控制成牙本质细胞分化的分子机制仍知之甚少。在此,我们表明睾丸酸性磷酸酶(ACPT)的表达在增殖性牙间充质细胞和成牙本质分泌细胞的成牙本质细胞分化早期受到限制。ACPT的表达早于组织非特异性碱性磷酸酶(TNAP),并且在分化的成牙本质细胞中与TNAP部分重叠。在MDPC-23成牙本质细胞中,ACPT的表达与β-连环蛋白活性的降低同时出现,并随着Phex和Dsp的表达而消失。在MDPC-23细胞中敲低ACPT会刺激细胞增殖,同时活性β-连环蛋白和细胞周期蛋白D1增加。相反,ACPT的过表达会抑制细胞增殖,同时活性β-连环蛋白和细胞周期蛋白D1减少。敲低ACPT会降低TNAP、Osx、Phex和Dsp的表达,但ACPT过表达会增强它们的表达。当用IgG阻断ACPT时,碱性磷酸酶活性受到抑制,但无论ACPT表达如何,细胞增殖均未改变。这些发现表明,ACPT通过β-连环蛋白介导的信号通路抑制牙间充质中的细胞增殖,但在牙本质形成过程中通过提供磷酸盐引发成牙本质细胞分化和矿化。因此,ACPT可能是诱导成牙本质细胞分化和矿化以进行牙本质再生的新候选物。