Department of Periodontology, Kagoshima University Graduate School of Medical and Dental Sciences, Kagoshima, Japan.
Department of Oral Biochemistry, Kagoshima University Graduate School of Medical and Dental Sciences, Kagoshima, Japan.
FASEB J. 2019 Nov;33(11):12124-12134. doi: 10.1096/fj.201900733RR. Epub 2019 Jul 31.
Bone morphogenetic protein (BMP)9 has been reported to be the most potent BMP to induce bone formation. However, the details of BMP9-transduced intracellular signaling remain ambiguous. Here, we have investigated signal transduction mechanisms of BMP9 in comparison to BMP2, another potent inducer of bone formation, in osteoblasts. In a mouse osteoblast cell line, BMP9 induced higher mRNA levels of alkaline phosphatase (ALP) and runt-related transcription factor 2 (Runx2) than BMP2 within 2 h. Unlike BMP2, BMP9 induced rapid phosphorylation of glycogen synthase kinase 3-β (GSK3-β) and protein kinase B (Akt) and increased the cellular protein content of β-catenin. BMP9 moderately increased mRNA levels of several canonical Wingless-related integration site to lower degrees than BMP2. Furthermore, BMP9-induced GSK3-β phosphorylation was not inhibited by pretreatment with actinomycin D, cycloheximide, or Brefeldin A, indicating it is independent of Wnt protein secretion. BMP9-induced GSK3-β phosphorylation was abrogated by Akt or class I PI3K-specific inhibitors. Moreover, inactivation of GSK3-β by LiCl did not further promote ALP and Runx2 mRNA induction by BMP9 as significantly as that by BMP2. Notably, BMP9-induced GSK3-β phosphorylation was inhibited by small interfering RNA against endoglin and GIPC PDZ domain-containing family, member 1. Taken together, our present findings have indicated that BMP9 directly activates GSK3β-β-catenin signaling pathway through class I PI3K-Akt Axis in osteoblasts, which may be essential for the potent osteoinductive activity of BMP9.-Eiraku, N., Chiba, N., Nakamura, T., Amir, M. S., Seong, C.-H., Ohnishi, T., Kusuyama, J., Noguchi, K., Matsuguchi, T. BMP9 directly induces rapid GSK3-β phosphorylation in a Wnt-independent manner through class I PI3K-Akt axis in osteoblasts.
骨形态发生蛋白(BMP)9 已被报道为诱导骨形成最有效的 BMP。然而,BMP9 转导的细胞内信号的细节仍然不清楚。在这里,我们研究了 BMP9 与另一种有效的骨形成诱导剂 BMP2 在成骨细胞中的信号转导机制。在小鼠成骨细胞系中,BMP9 在 2 小时内诱导碱性磷酸酶(ALP)和 runt 相关转录因子 2(Runx2)的 mRNA 水平高于 BMP2。与 BMP2 不同,BMP9 诱导糖原合酶激酶 3-β(GSK3-β)和蛋白激酶 B(Akt)的快速磷酸化,并增加β-连环蛋白的细胞蛋白含量。BMP9 适度增加了几个经典的 Wingless 相关整合位点的 mRNA 水平,但程度低于 BMP2。此外,BMP9 诱导的 GSK3-β 磷酸化不受放线菌酮、环己酰亚胺或布雷菲德菌素 A 的预处理抑制,表明它独立于 Wnt 蛋白分泌。BMP9 诱导的 GSK3-β 磷酸化被 Akt 或 I 类 PI3K 特异性抑制剂阻断。此外,LiCl 使 GSK3-β失活并没有像 BMP2 那样进一步促进 BMP9 诱导的 ALP 和 Runx2 mRNA 诱导。值得注意的是,BMP9 诱导的 GSK3-β 磷酸化被针对内格琳和 GIPC PDZ 结构域家族成员 1 的小干扰 RNA 抑制。总之,我们目前的研究结果表明,BMP9 通过 I 类 PI3K-Akt 轴直接激活成骨细胞中的 GSK3β-β-连环蛋白信号通路,这可能对 BMP9 的强烈成骨活性至关重要。