Higashi Katsumasa, Matsuzaki Etsuko, Hashimoto Yoko, Takahashi-Yanaga Fumi, Takano Aiko, Anan Hisashi, Hirata Masato, Nishimura Fusanori
Periodontal Section, Division of Oral Rehabilitation, Faculty of Dental Science, Kyushu University, Fukuoka, Japan.
Periodontal Section, Division of Oral Rehabilitation, Faculty of Dental Science, Kyushu University, Fukuoka, Japan; Section of Operative Dentistry and Endodontology, Department of Odontology, Fukuoka Dental College, Fukuoka, Japan.
Bone. 2016 Dec;93:1-11. doi: 10.1016/j.bone.2016.09.003. Epub 2016 Sep 6.
Sphingosine-1-phosphate (S1P) is a signaling sphingolipid that also plays crucial roles in bone regeneration. Recently, we reported that the S1P receptors S1PR1 and S1PR2 were mainly expressed in osteoblast-like cells, and that the S1P/S1PR1 signaling pathway up-regulated osteoprotegerin and osteoblast differentiation. However, the involvement of S1P/S1PR2 signaling in osteoblast differentiation is not well understood. Here we investigate the role of S1P/S1PR2-mediated signaling in osteoblast differentiation and clarify the underlying signaling mechanisms. We found that an S1P/S1PR2/Gi-independent signaling pathway activated RhoA activity, leading to phosphorylation of Smad1/5/8 in mouse osteoblast-like MC3T3-E1 cells and primary osteoblasts. Furthermore, this signaling pathway promoted nuclear translocation of Smad4, and increased the amount of Smad6/7 protein in the nucleus. S1P also up-regulated runt-related transcription factor 2 (Runx2) expression through S1PR2/RhoA/ROCK/Smad1/5/8 signaling. Moreover, we found that S1P partially triggered S1PR2/RhoA/ROCK pathway leading to bone formation in vivo. These findings suggest that S1P induces RhoA activity, leading to the phosphorylation of Smad1/5/8, thereby promoting Runx2 expression and differentiation in osteoblasts. Our findings describe novel molecular mechanisms in S1P/S1PR2-mediated osteoblast differentiation that could aid future studies of bone regeneration.
鞘氨醇-1-磷酸(S1P)是一种信号鞘脂,在骨再生中也起着关键作用。最近,我们报道S1P受体S1PR1和S1PR2主要在成骨样细胞中表达,并且S1P/S1PR1信号通路上调了骨保护素和成骨细胞分化。然而,S1P/S1PR2信号在成骨细胞分化中的作用尚未完全明确。在此,我们研究S1P/S1PR2介导的信号在成骨细胞分化中的作用,并阐明其潜在的信号机制。我们发现,一条不依赖S1P/S1PR2/Gi的信号通路激活了RhoA活性,导致小鼠成骨样MC3T3-E1细胞和原代成骨细胞中Smad1/5/8磷酸化。此外,该信号通路促进了Smad4的核转位,并增加了细胞核中Smad6/7蛋白的量。S1P还通过S1PR2/RhoA/ROCK/Smad1/5/8信号上调了 runt相关转录因子2(Runx2)的表达。此外,我们发现S1P在体内部分触发S1PR2/RhoA/ROCK通路导致骨形成。这些发现表明,S1P诱导RhoA活性,导致Smad1/5/8磷酸化,从而促进成骨细胞中Runx2的表达和分化。我们的发现描述了S1P/S1PR2介导的成骨细胞分化中的新分子机制,这可能有助于未来骨再生的研究。