首页> 美国卫生研究院文献>PLoS Clinical Trials >MEPE-Derived ASARM Peptide Inhibits Odontogenic Differentiation of Dental Pulp Stem Cells and Impairs Mineralization in Tooth Models of X-Linked Hypophosphatemia
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MEPE-Derived ASARM Peptide Inhibits Odontogenic Differentiation of Dental Pulp Stem Cells and Impairs Mineralization in Tooth Models of X-Linked Hypophosphatemia

机译:MEPE衍生的ASARM肽抑制牙髓干细胞X连锁低磷血症牙齿模型的牙源性分化并损害矿化作用。

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摘要

Mutations in PHEX (phosphate-regulating gene with homologies to endopeptidases on the X-chromosome) cause X-linked familial hypophosphatemic rickets (XLH), a disorder having severe bone and tooth dentin mineralization defects. The absence of functional PHEX leads to abnormal accumulation of ASARM (acidic serine- and aspartate-rich motif) peptide − a substrate for PHEX and a strong inhibitor of mineralization − derived from MEPE (matrix extracellular phosphoglycoprotein) and other matrix proteins. MEPE-derived ASARM peptide accumulates in tooth dentin of XLH patients where it may impair dentinogenesis. Here, we investigated the effects of ASARM peptides in vitro and in vivo on odontoblast differentiation and matrix mineralization. Dental pulp stem cells from human exfoliated deciduous teeth (SHEDs) were seeded into a 3D collagen scaffold, and induced towards odontogenic differentiation. Cultures were treated with synthetic ASARM peptides (phosphorylated and nonphosphorylated) derived from the human MEPE sequence. Phosphorylated ASARM peptide inhibited SHED differentiation in vitro, with no mineralized nodule formation, decreased odontoblast marker expression, and upregulated MEPE expression. Phosphorylated ASARM peptide implanted in a rat molar pulp injury model impaired reparative dentin formation and mineralization, with increased MEPE immunohistochemical staining. In conclusion, using complementary models to study tooth dentin defects observed in XLH, we demonstrate that the MEPE-derived ASARM peptide inhibits both odontogenic differentiation and matrix mineralization, while increasing MEPE expression. These results contribute to a partial mechanistic explanation of XLH pathogenesis: direct inhibition of mineralization by ASARM peptide leads to the mineralization defects in XLH teeth. This process appears to be positively reinforced by the increased MEPE expression induced by ASARM. The MEPE-ASARM system can therefore be considered as a potential therapeutic target.
机译:PHEX(与X染色体上的内肽酶具有同源性的磷酸调节基因)突变会导致X连锁的家族性低磷酸盐病(XLH),这种疾病具有严重的骨骼和牙齿牙本质矿化缺陷。功能性PHEX的缺乏会导致ASARM(酸性丝氨酸和天冬氨酸丰富的基序)肽(PHEX的底物和强烈的矿化抑制剂)异常蓄积,该肽源自MEPE(基质细胞外磷酸糖蛋白)和其他基质蛋白。 MEPE衍生的ASARM肽积聚在XLH患者的牙齿牙本质中,可能会损害牙本质的生成。在这里,我们调查了体外和体内ASARM肽对成牙本质细胞分化和基质矿化的影响。将来自人类脱落乳牙(SHED)的牙髓干细胞播种到3D胶原蛋白支架中,并诱导成牙本质分化。用衍生自人MEPE序列的合成ASARM肽(磷酸化和非磷酸化)处理培养物。磷酸化的ASARM肽在体外抑制SHED分化,没有矿化的结节形成,成牙本质细胞标志物表达降低,而MEPE表达上调。在大鼠磨牙髓损伤模型中植入的磷酸化ASARM肽会损害修复性牙本质的形成和矿化,并增加MEPE免疫组织化学染色。总之,使用互补模型研究在XLH中观察到的牙齿牙本质缺损,我们证明了MEPE衍生的ASARM肽既可以抑制牙源性分化,又可以抑制基质矿化,同时提高了MEPE的表达。这些结果有助于XLH发病机理的部分机理解释:ASARM肽直接抑制矿化会导致XLH牙齿矿化缺陷。 ASARM诱导的MEPE表达增加似乎积极增强了这一过程。因此,可以将MEPE-ASARM系统视为潜在的治疗目标。

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