Zhao Lin, Su Jiali, Liu Sijia, Li Yang, Xi Tao, Ruan Jianping, Liang Kristina Xiao, Huang Ruizhe
Department of Oral Pathology, College of Stomatology, Ningxia Medical University, Yinchuan, 750004, China; Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases. Department of Preventive Dentistry, Stomatology Hospital, Xi'an Jiaotong University, Xi'an, 710004, China.
Yinchuan Stomatology Hospital, Yinchuan, 750002, China.
Biochem Biophys Res Commun. 2021 Jan 22;542:65-72. doi: 10.1016/j.bbrc.2020.12.100.
Dental fluorosis is characterized by hypomineralization of tooth enamel caused by ingestion of excessive fluoride during enamel formation. Excess fluoride could have effects on the ERK signaling, which is essential for the ameloblasts differentiation and tooth development. MAP kinase phosphatase-1 (MKP-1) plays a critical role in regulating ERK related kinases. However, the role of MKP-1 in ameloblast and the mechanisms of MKP-1/ERK signaling in the pathogenesis of dental fluorosis are incompletely understood. Here, we adopted an in vitro fluorosis cell model using murine ameloblasts-like LS8 cells by employing sodium fluoride (NaF) as inducer. Using this system, we demonstrated that fluoride exposure led to an inhibition of p-MEK and p-ERK1/2 with a subsequent increase in MKP-1 expression in a dose-dependent manner. We further identified, under high dose fluoride, MKP-1 acted as a negative regulator of the fluoride-induced p-ERK1/2 signaling, leading to downregulation of CREB, c-myc, and Elk-1. Our results identify a novel MKP-1/ERK signaling mechanism that regulates dental fluorosis and provide a framework for studying the molecular mechanisms of intervention and fluorosis remodeling under normal and pathological conditions. MKP-1 inhibitors may prove to be a benefit therapeutic strategy for dental fluorosis treatment.
氟斑牙的特征是在牙釉质形成过程中因摄入过量氟而导致牙釉质矿化不足。过量的氟可能会影响ERK信号通路,而该信号通路对成釉细胞分化和牙齿发育至关重要。丝裂原活化蛋白激酶磷酸酶-1(MKP-1)在调节ERK相关激酶中起关键作用。然而,MKP-1在成釉细胞中的作用以及MKP-1/ERK信号通路在氟斑牙发病机制中的作用尚未完全明确。在此,我们采用以氟化钠(NaF)为诱导剂的小鼠成釉细胞样LS8细胞建立体外氟中毒细胞模型。利用该系统,我们证明氟暴露导致p-MEK和p-ERK1/2受到抑制,随后MKP-1表达呈剂量依赖性增加。我们进一步确定,在高剂量氟条件下,MKP-1作为氟诱导的p-ERK1/2信号通路的负调节因子,导致CREB、c-myc和Elk-1下调。我们的研究结果确定了一种调节氟斑牙的新型MKP-1/ERK信号机制,并为研究正常和病理条件下干预及氟斑牙重塑的分子机制提供了框架。MKP-1抑制剂可能被证明是治疗氟斑牙的有益治疗策略。