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CXXC5 Mediates P. gingivalis -suppressed Cementoblast Functions Partially via MAPK Signaling Network

机译:CXXC5 Mediates P. Gingivalis -Suppressed Cementoblast通过MAPK信令网络部分地函数

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Porphyromonas (P.) gingivalis associates tightly with periodontal diseases and it is also a dominant pathogen of periapical periodontitis. However, the influence of P. gingivalis on cementoblasts, root surface cells pivotal in the apical areas, and the possible involvement of other molecules remain largely elusive. CXXC5 is a nuclear protein that regulates gene expression as well as cell growth, differentiation, and apoptosis. In this study, P. gingivalis repressed the mineralization capacity of cementoblasts by inducing inflammatory reactions and inhibiting cell differentiation. Intriguingly, the expression of CXXC5 decreased in P. gingivalis-treated OCCM-30 cells and apical periodontitis models but gradually increased during mineralization. Furthermore, RNA interference of CXXC5 significantly inhibited cementoblast differentiation, represented by decline of bone-associated markers Osterix, osteocalcin (OCN), and alkaline phosphatase (ALP). CXXC5 overexpression facilitated differentiation, and therefore attenuated the P. gingivalis-repressed effects on OCCM-30 cells. In addition, Erk1/2, p38, and PI3K-Akt were inactivated by silencing CXXC5 and activated upon its overexpression, whereas Wnt/β-catenin exhibited an opposite trend. The employment of specific inhibitors revealed that the CXXC5-dependent promotions of cementoblast differentiation were partially abrogated by p38 and PI3K-Akt inhibitors but were exacerbated by inhibiting Erk1/2. Overall, our experiment demonstrated a novel function of CXXC5 in the regeneration of impaired cementum caused by P. gingivalis invasion and suggested that MAPK signaling network balances the facilitation effects of CXXC5 in cementoblast differentiation.
机译:Porphyromonas(P.)Gingivalis紧紧地与牙周病患者缔结,它也是恐慌牙周炎的主要病原体。然而,P.Gingivalis对顶部区域中的根表面细胞的影响,以及其他分子可能的累伤仍然很大程度上是难以捉摸的。 CXXC5是一种调节基因表达以及细胞生长,分化和细胞凋亡的核蛋白质。在本研究中,P.Gingivalis通过诱导炎症反应和抑制细胞分化来抑制牙胚层的矿化能力。有趣的是,CXXC5的表达在P.Gingivalis治疗的TOPM-30细胞和顶端牙周炎模型中降低,但在矿化过程中逐渐增加。此外,CXXC5的RNA干扰显着抑制了骨髓相关标志物Osterix,骨癌(OCN)和碱性磷酸酶(ALP)的衰落所代表的静脉化细胞分化。 CXXC5过表达促进的分化,因此衰减了对TOMM-30细胞的牙龈抑制效应。另外,通过沉默CXXC5将ERK1 / 2,P38和PI3K-AKT灭活并在其过表达时激活,而WNT /β-Catenin表现出相反的趋势。特异性抑制剂的就业表明,通过P38和PI3K-AKT抑制剂部分消除了CXXC5依赖性促进剂,但通过抑制ERK1 / 2加剧。总体而言,我们的实验表明CXXC5在P. Gingivalis入侵引起的粪便损伤的再生中的新功能,并提出了MAPK信号通信网络平衡CXXC5在Cementoblast分化中的促进效果。

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