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PERK-eIF2 alpha-ATF4 pathway mediated by endoplasmic reticulum stress response is involved in osteodifferentiation of human periodontal ligament cells under cyclic mechanical force

机译:内质网应激反应介导的PERK-eIF2 alpha-ATF4途径在循环力的作用下参与人牙周膜细胞的骨分化

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To prevent excess accumulation of unfolded proteins in endoplasmic reticulum (ER), eukaryotic cells have signaling pathways from the ER to the cytosol or nucleus. These processes are known as the endoplasmic reticulum stress (ERS) response. Protein kinase R like endoplasmic reticulum kinase (PERK) is a major transducer of the ERS response and it directly phosphorylate a -subunit of eukaryotic initiation factor 2 (eIF2a), resulting in translational attenuation. Phosphorylated eIF2a specifically promoted the translation of the activating transcription factor 4 (ATF4). ATF4 is a known important transcription factor which plays a pivotal role in osteoblast differentiation and bone formation. Furthermore, ATF4 is a downstream target of PERK. Studies have shown that PERK-eIF2a-ATF4 signal pathway mediated by ERS was involved in osteoblastic differentiation of osteoblasts. We have known that orthodontic tooth movement is a process of periodontal ligament cells (PDLCs) osteodifferentiation and alveolar bone remodeling under mechanical force. However, the involvement of PERK-eIF2a-ATF4 signal pathway mediated by ERS in osteogenic differentiation of PDLCs under mechanical force has not been unclear. In our study, we applied the cyclic mechanical force at 10% elongation with 0.5 Hz to mimic occlusal force, and explored whether PERK-eIF2a-ATF4 signaling pathway mediated by ERS involved in osteogenic differentiation of PDLCs under mechanical force. Firstly, cyclic mechanical force will induce ERS and intensify several osteoblast marker genes (ATF4, OCN, and BSP). Next, we found that PERK overexpressionIncreased eIF2a phosphorylation and expression of ATF4, furthermore induced BSP, OCN expression, thus it will promote osteodifferentiation of hPDLCs; mechanical force could promote this effect. However, PERK-/- cells showed the opposite changes, which will inhibit osteodifferentiation of hPDLCs. Taken together, our study proved that PERK-eIF2a-ATF4 signaling pathway mediated by ERS involved in osteoblast differentiation of PDLCs under cyclic mechanical force. (C) 2016 Elsevier Inc. All rights reserved.
机译:为了防止未折叠的蛋白质在内质网(ER)中过多积累,真核细胞具有从ER到细胞质或细胞核的信号通路。这些过程称为内质网应激(ERS)反应。像内质网激酶(PERK)一样的蛋白激酶R是ERS反应的主要转导子,它直接磷酸化真核起始因子2(eIF2a)的-亚基,导致翻译减弱。磷酸化的eIF2a特异性促进激活转录因子4(ATF4)的翻译。 ATF4是已知的重要转录因子,在成骨细胞分化和骨形成中起关键作用。此外,ATF4是PERK的下游目标。研究表明,ERS介导的PERK-eIF2a-ATF4信号通路与成骨细胞的成骨细胞分化有关。我们知道正畸牙齿运动是牙周膜细胞(PDLC)在机械力作用下骨分化和牙槽骨重塑的过程。然而,由ERS介导的PERK-eIF2a-ATF4信号通路在机械力作用下是否参与PDLC的成骨分化尚不清楚。在我们的研究中,我们以10%的伸长率和0.5 Hz的频率施加周期性机械力来模拟咬合力,并探讨了ERS介导的PERK-eIF2a-ATF4信号通路在机械力作用下是否参与PDLC的成骨分化。首先,循环机械力将诱导ERS并增强几个成骨细胞标记基因(ATF4,OCN和BSP)。接下来,我们发现PERK的过表达增加了eIF2a的磷酸化和ATF4的表达,进而诱导了BSP,OCN的表达,从而促进了hPDLC的骨分化。机械力可以促进这种作用。但是,PERK-/-细胞显示相反的变化,这将抑制hPDLC的骨分化。两者合计,我们的研究证明,由ERS介导的PERK-eIF2a-ATF4信号通路参与循环机械力作用下PDLC的成骨细胞分化。 (C)2016 Elsevier Inc.保留所有权利。

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