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Fluid shear stress promotes osteoblast proliferation through the NFATc1-ERK5 pathway

机译:通过NFATC1-ERK5途径促进液体剪切应力促进成骨细胞增殖

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Purpose: Extracellular-regulated kinase 5 (ERK5) is thought to regulate osteoblast proliferation. To further understand how ERK5 signaling regulates osteoblast proliferation induced by fluid shear stress (FSS), we examined some potential signaling targets associated with ERK5 in MC3T3-E1 cells. Methods: MC3T3-E1 cells were treated with XMD8-92 (an ERK5 inhibitor) or Cyclosporin A (CsA, a nuclear factor of activated T cells (NFAT) c1 inhibitor) and/or exposed to 12 dyn/cm(2) FSS. Phosphorylated-ERK5 (p-ERK5) and expression levels of NFATc1, ERK5, E2F2, and cyclin E1 were analyzed by western blot. The mRNA levels of genes associated with cell proliferation were analyzed by Polymerase Chain Reaction (PCR) array. Subcellular localization of p-ERK5 and NFATc1 were determined by immunofluorescence. Cell proliferation was evaluated by MTT assay. Results: NFATc1 expression was up-regulated by FSS. XMD8-92 only blocked ERK5 activation; however, CsA decreased NFATc1 and p-ERK5 levels, including after FSS stimulation. Exposure to NFATc1 inhibitor or ERK5 inhibitor resulted in decreased E2F2 and cyclin E1 expression and proliferation by proliferative MC3T3-E1 cells. Furthermore, immunofluorescence results illustrated that NFATc1 induced ERK5 phosphorylation, resulting in p-ERK5 translocation to the nucleus. Conclusions: Our results reveal that NFATc1 acts as an intermediate to promote the phosphorylation of ERK5 induced by FSS. Moreover, activated NFATc1-ERK5 signaling up-regulates the expression of E2F2 and cyclin E1, which promote osteoblast proliferation.
机译:目的:以细胞外调节激酶5(ERK5)被认为调节成骨细胞增殖。为了进一步了解ERK5信号传导如何调节通过流体剪切应力(FSS)诱导的骨细胞增殖,我们检查了与MC3T3-E1细胞中的ERK5相关的一些潜在的信令靶标。方法:用XMD8-92(ERK5抑制剂)或环孢菌素A(CSA,活化T细胞(NFAT)C1抑制剂的核因子)处理MC3T3-E1细胞和/或暴露于12达克/厘米(2)FSS。通过Western印迹分析磷酸化-ERK5(P-ERK5)和NFATC1,ERK5,E2F2和细胞周期蛋白E1的表达水平。通过聚合酶链式反应(PCR)阵列分析与细胞增殖相关的基因的mRNA水平。通过免疫荧光测定P-ERK5和NFATC1的亚细胞定位。通过MTT测定评估细胞增殖。结果:NFATC1表达由FSS上调。 XMD8-92仅阻塞ERK5激活;然而,CSA降低了NFATC1和P-ERK5水平,包括在FSS刺激之后。暴露于NFATC1抑制剂或ERK5抑制剂导致增殖MC3T3-E1细胞的E2F2和细胞周期蛋白E1表达和增殖降低。此外,免疫荧光结果表明NFATC1诱导ERK5磷酸化,导致对核的P-ERK5易位。结论:我们的研究结果表明,NFATC1充当中间体以促进FSS诱导的ERK5的磷酸化。此外,活化的NFATC1-ERK5信号上调促进E2F2和细胞周期蛋白E1的表达,这促进了骨细胞增殖。

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