Tomomi Ida, Kanzaki Hiroyuki, Shimoyama Miho, Tohyama Syunnosuke, Ishikawa Misao, Katsumata Yuta, Arai Chihiro, Wada Satoshi, Manase Shugo, Tomonari Hiroshi
Department of Orthodontics, School of Dental Medicine, Tsurumi University, Yokohama 230-8501, Kanagawa, Japan.
Department of Anatomy, School of Dental Medicine, Tsurumi University, Yokohama 230-8501, Kanagawa, Japan.
Antioxidants (Basel). 2024 Jul 24;13(8):896. doi: 10.3390/antiox13080896.
Calcification plays a key role in biological processes, and breakdown of the regulatory mechanism results in a pathological state such as ectopic calcification. We hypothesized that ENPP1, the enzyme that produces the calcification inhibitor pyrophosphate, is transcriptionally regulated by Nrf2, and that Nrf2 activation augments ENPP1 expression to inhibit ectopic calcification. Cell culture experiments were performed using mouse osteoblastic cell line MC3T3-E1. Nrf2 was activated by 5-aminolevulinic acid and sodium ferrous citrate. Nrf2 overexpression was induced by the transient transfection of an Nrf2 expression plasmid. ENPP1 expression was monitored by real-time RT-PCR. Because the promoter region of ENPP1 contains several Nrf2-binding sites, chromatin immunoprecipitation using an anti-Nrf2 antibody followed by real-time PCR (ChIP-qPCR) was performed. The relationship between Nrf2 activation and osteoblastic differentiation was examined by alkaline phosphatase (ALP) and Alizarin red staining. We used mice with a hypomorphic mutation in ENPP1 (ttw mice) to analyze whether Nrf2 activation inhibits ectopic calcification. Nrf2 and Nrf2 overexpression augmented ENPP1 expression and inhibited osteoblastic differentiation, as indicated by ALP expression and calcium deposits. ChIP-qPCR showed that some putative Nrf2-binding sites in the ENPP1 promoter region were bound by Nrf2. Nrf2 activation inhibited ectopic calcification in mice. ENPP1 gene expression was transcriptionally regulated by Nrf2, and Nrf2 activation augmented ENPP1 expression, leading to the attenuation of osteoblastic differentiation and ectopic calcification in vitro and in vivo. Nrf2 activation has a therapeutic potential for preventing ectopic calcification.
钙化在生物过程中起关键作用,调节机制的破坏会导致诸如异位钙化等病理状态。我们推测,产生钙化抑制剂焦磷酸的酶ENPP1受Nrf2转录调控,且Nrf2激活可增强ENPP1表达以抑制异位钙化。使用小鼠成骨细胞系MC3T3-E1进行细胞培养实验。Nrf2通过5-氨基乙酰丙酸和柠檬酸亚铁钠激活。通过瞬时转染Nrf2表达质粒诱导Nrf2过表达。通过实时RT-PCR监测ENPP1表达。由于ENPP1的启动子区域包含多个Nrf2结合位点,因此使用抗Nrf2抗体进行染色质免疫沉淀,随后进行实时PCR(ChIP-qPCR)。通过碱性磷酸酶(ALP)和茜素红染色检查Nrf2激活与成骨细胞分化之间的关系。我们使用ENPP1基因低表达突变的小鼠(ttw小鼠)来分析Nrf2激活是否抑制异位钙化。如ALP表达和钙沉积所示,Nrf2和Nrf2过表达增强了ENPP1表达并抑制了成骨细胞分化。ChIP-qPCR表明,ENPP1启动子区域中一些假定的Nrf2结合位点被Nrf2结合。Nrf2激活抑制了小鼠的异位钙化。ENPP1基因表达受Nrf2转录调控,Nrf2激活增强了ENPP1表达,导致体外和体内成骨细胞分化和异位钙化减弱。Nrf2激活在预防异位钙化方面具有治疗潜力。