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Phosphate-dependent stimulation of MGP and OPN expression in osteoblasts via the ERK1/2 pathway is modulated by calcium.

机译:钙通过ERK1 / 2途径磷酸依赖性刺激成骨细胞中MGP和OPN的表达。

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摘要

Inorganic phosphate (Pi) acts as a signaling molecule in bone-forming cells, affecting cell functions and gene expression. Particularly, Pi stimulates the expression of mineralization-associated genes such as matrix gla protein (MGP) and osteopontin (OPN) through the ERK1/2 pathway. With respect to the presence of elevated extracellular calcium and Pi levels during bone remodeling, we questioned whether calcium might play a role in the Pi-dependent effects in osteoblasts. We first showed by Western blot and real-time PCR that the concomitant presence of 10 mM Pi and 1.8 mM calcium is required to stimulate ERK1/2 phosphorylation and MGP/OPN genes expression. The mechanisms involved in the cellular effects of calcium in the presence of Pi were subsequently examined. Firstly, the use of the calcium-sensing receptor (CaSR) agonist gadolinium and the G-protein inhibitor pertussis toxin enabled us to determine that a CaSR mechanism is not involved in the Pi and calcium mediated cellular effects. By transmission electron microscopy, we next demonstrated that adding 10mM Pi to the culture medium containing 1.8mM calcium led to the formation calcium phosphate precipitates (CaPp). Moreover, treatment of osteoblasts with exogenous pre-synthesized CaPp stimulated ERK1/2 phosphorylation and MGP/OPN genes expression. In spite of high extracellular calcium and Pi concentrations, this stimulation was blunted in the presence of phosphocitrate, an inhibitor of crystal formation. Finally, we showed that despite that CaPp are not endocytosed, their effect on ERK1/2 phosphorylation and MGP/OPN genes expression were dependent on lipid rafts integrity. In summary, we showed that calcium is required for Pi-dependent ERK1/2 phosphorylation and regulation of mineralization-associated genes in osteoblasts and that its effect could originate from extracellular-related effects of CaPp that are dependent on the integrity of lipid rafts.
机译:无机磷酸盐(Pi)在骨形成细胞中充当信号分子,影响细胞功能和基因表达。特别地,Pi通过ERK1 / 2途径刺激与矿化相关的基因如基质gla蛋白(MGP)和骨桥蛋白(OPN)的表达。关于骨骼重塑过程中细胞外钙和Pi水平升高的存在,我们质疑钙是否可能在成骨细胞的Pi依赖效应中起作用。我们首先通过Western印迹和实时PCR表明,需要同时存在10 mM Pi和1.8 mM钙来刺激ERK1 / 2磷酸化和MGP / OPN基因表达。随后研究了在Pi存在下钙对细胞的细胞作用所涉及的机制。首先,使用钙敏感受体(CaSR)激动剂g和G蛋白抑制剂百日咳毒素使我们能够确定CaSR机制不参与Pi和钙介导的细胞作用。通过透射电子显微镜,我们接下来证明了向含有1.8mM钙的培养基中添加10mM Pi会导致形成磷酸钙沉淀(CaPp)。此外,用外源预合成的CaPp处理成骨细胞可刺激ERK1 / 2磷酸化和MGP / OPN基因表达。尽管细胞外钙和Pi的浓度很高,但在磷酸钙(一种晶体形成的抑制剂)的存在下,这种刺激作用却减弱了。最后,我们表明,尽管CaPp没有被内吞,但它们对ERK1 / 2磷酸化和MGP / OPN基因表达的影响取决于脂质筏的完整性。总之,我们表明钙是成骨细胞中Pi依赖的ERK1 / 2磷酸化和矿化相关基因调节所必需的,其作用可能源自CaPp的细胞外相关作用,而CaPp依赖于脂质筏的完整性。

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