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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Parathyroid hormone-related protein regulates extracellular matrix gene expression in cementoblasts and inhibits cementoblast-mediated mineralization in vitro.
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Parathyroid hormone-related protein regulates extracellular matrix gene expression in cementoblasts and inhibits cementoblast-mediated mineralization in vitro.

机译:甲状旁腺激素相关蛋白调节成骨细胞中细胞外基质基因的表达,并在体外抑制成骨细胞介导的矿化。

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摘要

Parathyroid hormone-related protein (PTHrP) has been implicated in regulating tooth eruption and/or development. Formation of cementum, a mineralized tissue covering the tooth root surface, is a critical biological event for tooth root development. To test the hypothesis that PTHrP targets cementoblasts (CMs) and acts to regulate cementogenesis, CM cell lines were established and their responsiveness to PTHrP stimulation was determined, in vitro. First, subclones were derived from two immortalized murine cell populations that contained CMs; SV-CM/periodontal ligament (PDL) cells were obtained from the root surface of first mandibular molars of CD-1 mice and immortalized with SV40 T-antigen (TAg), and OC-CM cell population was established from OC-TAg transgenic mice in which their cells harbor an osteocalcin (OC and/or OCN) promoter-driving immortal gene SV40 TAg. Based on our previous in situ studies, CM subclones were identified as cells expressing bone sialoprotein (BSP) and OCN transcripts, while PDL cell lines were designated as cells lacking BSP and OCN messenger RNA (mRNA). CMs exhibited a cuboidal appearance and promoted biomineralization, both in vitro and in vivo. In contrast, PDL cells (PDL subclones) displayed a spindle-shaped morphology and lacked the ability to promote mineralized nodule formation, both in vitro and in vivo. Next, using these subclones, the effect of PTHrP on cementogenesis was studied. CMs, not PDL cells, expressed PTH/PTHrP receptor mRNA and exhibited PTHrP-mediated elevation in cyclic adenosine monophosphate (cAMP) levels and c-fos gene induction. PTHrP stimulation repressed mRNA expression of BSP and OCN in CMs and blocked CM-mediated mineralization, in vitro. Collectively, these data suggest that CMs possess PTH/PTHrP receptors and, thus, are direct targets for PTHrP action during cementogenesis and that PTHrP may serve as an important regulator of cementogenesis.
机译:甲状旁腺激素相关蛋白(PTHrP)与调节牙齿萌发和/或发育有关。牙骨质(覆盖牙根表面的矿化组织)的形成是牙根发育的关键生物学事件。为了检验PTHrP靶向成骨细胞(CMs)并调节牙骨质生成的假说,建立了CM细胞系,并在体外确定了它们对PTHrP刺激的反应性。首先,亚克隆来自两个永生化的含有CM的鼠细胞群体;从CD-1小鼠下颌第一磨牙的根表面获得SV-CM /牙周膜(PDL)细胞,并用SV40 T抗原(TAg)使其永生,并从OC-TAg转基因小鼠中建立OC-CM细胞群其中它们的细胞带有骨钙蛋白(OC和/或OCN)启动子驱动永生基因SV40 TAg。根据我们先前的原位研究,CM亚克隆被鉴定为表达骨唾液蛋白(BSP)和OCN转录本的细胞,而PDL细胞系被指定为缺乏BSP和OCN信使RNA(mRNA)的细胞。 CMs在体外和体内均表现为长方体外观并促进生物矿化。相反,PDL细胞(PDL亚克隆)在体外和体内均表现出纺锤形形态,并且缺乏促进矿化结节形成的能力。接下来,使用这些亚克隆研究了PTHrP对骨水泥形成的影响。 CM(不是PDL细胞)表达PTH / PTHrP受体mRNA,并显示PTHrP介导的环磷酸一腺苷(cAMP)水平升高和c-fos基因诱导。在体外,PTHrP刺激抑制了CM中BSP和OCN的mRNA表达,并阻止了CM介导的矿化。总体而言,这些数据表明,CMs具有PTH / PTHrP受体,因此是骨水泥形成过程中PTHrP作用的直接靶标,并且PTHrP可能是骨水泥形成的重要调节剂。

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