Yoshida Yuka, Inubushi Toshihiro, Yokoyama Mika, Nag Priyanka, Sasaki Jun-Ichi, Oka Ayaka, Murotani Tomoya, Kani Renshiro, Shiraishi Yuki, Kurosaka Hiroshi, Takahata Yoshifumi, Nishimura Riko, Imazato Satoshi, Papagerakis Petros, Yamashiro Takashi
Department of Orthodontics and Dentofacial Orthopedics, Osaka University Graduate School of Dentistry, Osaka 565-0871, Japan.
Department of Molecular and Cellular Biochemistry, Osaka University Graduate School of Dentistry, Osaka 565-0871, Japan.
Dis Model Mech. 2024 Dec 1;17(12). doi: 10.1242/dmm.052107. Epub 2024 Dec 10.
The sulfate transporter gene SLC26A2 is crucial for skeletal formation, as evidenced by its role in diastrophic dysplasia, a type of skeletal dysplasia in humans. Although SLC26A2-related chondrodysplasia also affects craniofacial and tooth development, its specific role in these processes remains unclear. In this study, we explored the pivotal roles of SLC26A2-mediated sulfate metabolism during tooth development. We found that Slc26a2 was predominantly expressed in dental tissues, including odontoblasts and ameloblasts. Slc26a2 knockout (Slc26a2-KO-Δexon2) mice exhibited distinct craniofacial abnormalities, such as a retrognathic upper jaw, small upper incisors and upper molar hypoplasia. These mice also showed flattened odontoblasts and loss of nuclear polarity in upper incisors and molars, with significant reductions in odontoblast differentiation markers Dspp and Dmp1. Ex vivo and in vitro studies further revealed dentin matrix hypoplasia, tooth root shortening and downregulation of Wnt signaling in Slc26a2-deficient cells. These findings highlight the crucial role of SLC26A2-mediated sulfate metabolism in tooth development and offer insights into the mechanisms underlying dental abnormalities in patients with SLC26A2-related chondrodysplasias.
硫酸盐转运蛋白基因SLC26A2对骨骼形成至关重要,这在人类的一种骨骼发育不良——畸形性发育不良中其作用得到了证明。尽管与SLC26A2相关的软骨发育不良也会影响颅面和牙齿发育,但其在这些过程中的具体作用仍不清楚。在本研究中,我们探讨了SLC26A2介导的硫酸盐代谢在牙齿发育过程中的关键作用。我们发现Slc26a2主要在包括成牙本质细胞和成釉细胞在内的牙齿组织中表达。Slc26a2基因敲除(Slc26a2-KO-Δexon2)小鼠表现出明显的颅面异常,如上颌后缩、上门牙小和上磨牙发育不全。这些小鼠的成牙本质细胞也出现扁平,上门牙和磨牙的核极性丧失,成牙本质细胞分化标志物Dspp和Dmp1显著减少。体外和体内研究进一步揭示了Slc26a2缺陷细胞中牙本质基质发育不全、牙根缩短和Wnt信号通路下调。这些发现突出了SLC26A2介导的硫酸盐代谢在牙齿发育中的关键作用,并为SLC26A2相关软骨发育不良患者牙齿异常的潜在机制提供了见解。