Yasuda Kazuma, Matsubara Takuma, Shirakawa Tomohiko, Kawamoto Tatsuo, Kokabu Shoichiro
Division of Molecular Signaling and Biochemistry, Department of Health Improvement, Kyushu Dental University, 2-6-1 Manazuru, Kokurakita-ku, Kitakyushu, Fukuoka 803-8580, Japan.
Division of Orofacial Functions and Orthodontics, Department of Health Improvement, Kyushu Dental University, 2-6-1 Manazuru, Kokurakita-ku, Kitakyushu, Fukuoka 803-8580, Japan.
Bone Rep. 2021 Aug 4;15:101114. doi: 10.1016/j.bonr.2021.101114. eCollection 2021 Dec.
The transcription factor NFATc1 and its binding partner AP-1 (a complex containing c-fos and c-Jun) play a central role in osteoclast differentiation. NFATc1 and AP-1 promote the expression of target genes such as and also auto-regulate expression as well. We previously reported that protein phosphatase 1 regulatory subunit 18 (PPP1r18) is a negative regulator of osteoclast bone resorption by inhibiting cell attachment to bone matrix. We also reported that PPP1r18 potentially regulates NFATc1 expression during osteoclast differentiation. To further explore this, in this study we have examined the effect of PPP1r18 on NFATc1 expression and activity by overexpressing PPP1r18 during the early stage of osteoclast differentiation. We found that PPP1r18 suppressed NFATc1 expression through inhibition of the transcriptional activity of NFATc1. Since PPP1r18 does not regulate NFATc1 directly, we next explored the involvement of AP-1. Our data showed that c-fos phosphorylation and nuclear localization were reduced by PPP1r18 overexpression. Further experiments showed that overexpression of c-fos together with PPP1r18 rescued NFATc1 expression and transcriptional activity. Moreover, c-fos activity inhibition by PPP1r18 was canceled by mutation of the phosphatase binding site of PPP1r18. Taken together, PPP1r18-regulated phosphatase activity targets c-fos phosphorylation and suppresses subsequent NFATc1 expression and activity.
转录因子NFATc1及其结合伴侣AP-1(一种包含c-fos和c-Jun的复合物)在破骨细胞分化中起核心作用。NFATc1和AP-1促进诸如等靶基因的表达,并且也对表达进行自我调节。我们之前报道过蛋白磷酸酶1调节亚基18(PPP1r18)通过抑制细胞与骨基质的附着,是破骨细胞骨吸收的负调节因子。我们还报道过PPP1r18在破骨细胞分化过程中可能调节NFATc1的表达。为了进一步探究这一点,在本研究中,我们通过在破骨细胞分化早期过表达PPP1r18,研究了PPP1r18对NFATc1表达和活性的影响。我们发现PPP1r18通过抑制NFATc1的转录活性来抑制NFATc1的表达。由于PPP1r18不直接调节NFATc1,接下来我们探究了AP-1的作用。我们的数据显示,过表达PPP1r18会降低c-fos的磷酸化水平和核定位。进一步的实验表明,与PPP1r18一起过表达c-fos可挽救NFATc1的表达和转录活性。此外,PPP1r18对c-fos活性的抑制作用可通过PPP1r18磷酸酶结合位点的突变而消除。综上所述,PPP1r18调节的磷酸酶活性靶向c-fos磷酸化,并抑制随后的NFATc1表达和活性。