Department of Orthodontics, Dental Clinic, School of Medicine, Ajou University, Suwon 443-721, South Korea.
Mol Cell Biochem. 2010 Feb;335(1-2):263-72. doi: 10.1007/s11010-009-0276-1. Epub 2009 Oct 2.
The precise mechanism by which Rho kinase translates the mechanical signals into OPN up-regulation in force-exposed fibroblasts has not been elucidated. Human periodontal ligament fibroblasts (hPLFs) were exposed to mechanical force by centrifuging the culture plates at a magnitude of 50 g/cm(2) for 60 min. At various times of the force application, they were processed for analyzing cell viability, trypan blue exclusion, and OPN expression at protein and RNA levels. Cellular mechanism(s) of the force-induced OPN up-regulation was also examined using various kinase inhibitors or antisense oligonucleotides specific to mechanosensitive factors. Centrifugal force up-regulated OPN expression and induced a rapid and transient increase in the phosphorylation of focal adhesion kinase (FAK), extracellular signal-regulated kinase (ERK), and Elk1. Pharmacological blockade of RhoA/Rho-associated coiled coil-containing kinase (ROCK) signaling markedly reduced force-induced FAK and ERK1/2 phosphorylation. Transfecting hPLFs with FAK antisense oligonucleotide diminished ERK1/2 activation and force-induced OPN expression. Further, ERK inhibitor inhibited significantly OPN expression, Elk1 phosphorylation, and activator protein-1 (AP-1)-DNA binding activation, but not FAK phosphorylation, in the force-applied cells. These results demonstrate that FAK signaling plays critical roles in force-induced OPN expression in hPLFs through interaction with Rho/ROCK as upstream effectors and ERK-Elk1/ERK-c-Fos as downstream effectors.
Rho 激酶将机械信号精确转化为受力纤维母细胞中 OPN 上调的确切机制尚未阐明。通过将培养板以 50 g/cm(2)的离心力离心 60 分钟,使人牙周韧带成纤维细胞(hPLFs)暴露于机械力下。在施加力的不同时间,对细胞活力、台盼蓝排除和蛋白质和 RNA 水平的 OPN 表达进行处理。还使用各种激酶抑制剂或针对机械敏感因子的反义寡核苷酸来研究力诱导的 OPN 上调的细胞机制。离心力上调了 OPN 的表达,并诱导了粘着斑激酶(FAK)、细胞外信号调节激酶(ERK)和 Elk1 的磷酸化的快速和短暂增加。RhoA/Rho 相关卷曲螺旋蛋白激酶(ROCK)信号转导的药理学阻断显著降低了力诱导的 FAK 和 ERK1/2 磷酸化。用 FAK 反义寡核苷酸转染 hPLFs 可减弱 ERK1/2 的激活和力诱导的 OPN 表达。此外,ERK 抑制剂显著抑制了力应用细胞中的 OPN 表达、Elk1 磷酸化和激活蛋白-1(AP-1)-DNA 结合激活,但不抑制 FAK 磷酸化。这些结果表明,FAK 信号通过与 Rho/ROCK 作为上游效应物相互作用,通过 ERK-Elk1/ERK-c-Fos 作为下游效应物,在 hPLFs 中发挥关键作用,促进力诱导的 OPN 表达。