首页> 外文期刊>The Journal of Endocrinology: The Journal of the Society for Endocrinology >MKP1-dependent PTH modulation of bone matrix mineralization in female mice is osteoblast maturation stage specific and involves P-ERK and P-p38 MAPKs
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MKP1-dependent PTH modulation of bone matrix mineralization in female mice is osteoblast maturation stage specific and involves P-ERK and P-p38 MAPKs

机译:雌性小鼠骨基质矿化的MKP1依赖性PTH调节是成骨细胞成熟阶段特异性的,涉及P-ERK和P-p38 MAPK

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摘要

Limited information is available on the role of MAPK phosphatase 1 (MKP1) signaling in osteoblasts. We have recently reported distinct roles for MKP1 during osteoblast proliferation, differentiation, and skeletal responsiveness to parathyroid hormone (PTH). As MKP1 regulates the phosphorylation status of MAPKs, we investigated the involvement of P-ERK and P-p38 MAPKs in MKP1 knockout (KO) early and mature osteoblasts with respect to mineralization and PTH response. Calvarial osteoblasts from 9–14-week-old WT and MKP1 KO male and female mice were examined. Western blot analysis revealed downregulation and sustained expressions of P-ERK and P-p38 with PTH treatment in differentiated osteoblasts derived from KO males and females respectively. Exposure of early osteoblasts to p38 inhibitor, SB203580 (S), markedly inhibited mineralization in WT and KO osteoblasts from both genders as determined by von Kossa assay. In osteoblasts from males, ERK inhibitor U0126 (U), not p38 inhibitor (S), prevented the inhibitory effects of PTH on mineralization in early or mature osteoblasts. In osteoblasts from KO females, PTH sustained mineralization in early osteoblasts and decreased mineralization in mature cells. This effect of PTH was attenuated by S in early osteoblasts and by U in mature KO cells. Changes in matrix Gla protein expression with PTH in KO osteoblasts did not correlate with mineralization, indicative of MKP1-dependent additional mechanisms essential for PTH action on osteoblast mineralization. We conclude that PTH regulation of osteoblast mineralization in female mice is maturation stage specific and involves MKP1 modulation of P-ERK and P-p38 MAPKs.
机译:关于成骨细胞中MAPK磷酸酶1(MKP1)信号传导的作用的信息有限。我们最近报道了MKP1在成骨细胞增殖,分化和对甲状旁腺激素(PTH)的骨骼反应中的独特作用。由于MKP1调节MAPK的磷酸化状态,我们研究了P-ERK和P-p38 MAPK在MKP1敲除(KO)早期和成熟成骨细胞中与矿化和PTH反应有关。检查了9-14周龄的WT和MKP1 KO雄性和雌性小鼠的颅骨成骨细胞。蛋白质印迹分析显示,PTH处理后的P-ERK和P-p38在分别来自KO雄性和雌性的分化成骨细胞中的下调和持续表达。根据von Kossa分析,将早期成骨细胞暴露于p38抑制剂SB203580(S),可显着抑制WT和KO成骨细胞的矿化。在雄性成骨细胞中,ERK抑制剂U0126(U)而非p38抑制剂(S)阻止了PTH对早期或成熟成骨细胞矿化的抑制作用。在来自KO雌性的成骨细胞中,PTH在早期成骨细胞中持续矿化,而在成熟细胞中矿化减少。 PTH的这种作用在成骨细胞中被S减弱,而在成熟KO细胞中被U减弱。 KO成骨细胞中PTH的基质Gla蛋白表达的变化与矿化不相关,表明PTH对成骨细胞矿化作用必不可少的依赖MKP1的其他机制。我们得出的结论是,雌性小鼠中成骨细胞矿化的PTH调节具有特定的成熟阶段,并且涉及P-ERK和P-p38 MAPK的MKP1调节。

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