Institutes of Agricultural Science and Technology Development, Joint International Research Laboratory of Agriculture and Agri-Product Safety of the Ministry of Education of China, Yangzhou University, Yangzhou, China.
College of Veterinary Medicine, Yangzhou University, Yangzhou, China.
J Cell Mol Med. 2021 Jan;25(2):937-945. doi: 10.1111/jcmm.16152. Epub 2020 Dec 4.
Osteoclastogenesis requires the involvement of transcription factors and degrading enzymes, and is regulated by upstream and downstream signalling. However, c-Fos how regulates osteoclastogenesis through autophagy remain unclear. This study aimed to explore the role of c-Fos during osteoprotegerin (OPG)-mediated suppression of osteoclastogenesis. We found that the number of osteoclasts and the expression of c-Fos, MMP-9, CAⅡ, Src and p62 were decreased after treated with OPG, including attenuation the PI3K/Akt and the TAK1/S6 signalling pathways, but the expression of Beclin1 and LC3Ⅱ were increased. Knockdown of Beclin1 could reverse the expression of c-Fos and MMP-9 by activating the PI3K/Akt signalling pathway, but inhibiting the autophagy and the TAK1/S6 signalling pathway. In addition, inhibition of autophagy using the PI3K inhibitor LY294002 did not rescues OPG-mediated suppression of osteoclastogenesis, but caused reduction of the expression of c-Fos and CAⅡ by attenuating the autophagy, as well as the PI3K/Akt and the TAK1/S6 signalling pathways. Furthermore, continuous activation of c-Fos could reverse OPG-mediated suppression of osteoclastogenesis by activating the autophagy and the PI3K/Akt and the TAK1/S6 signalling pathways. Thus, overexpression of c-Fos could reverse OPG-mediated suppression of osteoclastogenesis via activation of Beclin1-induced autophagy, indicating c-Fos might serve as a new candidate for bone-related basic studies.
破骨细胞的形成需要转录因子和降解酶的参与,并受到上下游信号的调节。然而,c-Fos 如何通过自噬来调节破骨细胞的形成尚不清楚。本研究旨在探讨 c-Fos 在骨保护素(OPG)介导的抑制破骨细胞形成中的作用。我们发现,OPG 处理后破骨细胞数量减少,c-Fos、MMP-9、CAⅡ、Src 和 p62 的表达减少,包括 PI3K/Akt 和 TAK1/S6 信号通路的衰减,但 Beclin1 和 LC3Ⅱ的表达增加。Beclin1 的敲低可以通过激活 PI3K/Akt 信号通路来逆转 c-Fos 和 MMP-9 的表达,但抑制自噬和 TAK1/S6 信号通路。此外,使用 PI3K 抑制剂 LY294002 抑制自噬并不能挽救 OPG 介导的破骨细胞形成抑制,但通过减弱自噬以及 PI3K/Akt 和 TAK1/S6 信号通路来降低 c-Fos 和 CAⅡ的表达。此外,c-Fos 的持续激活可以通过激活自噬和 PI3K/Akt 和 TAK1/S6 信号通路来逆转 OPG 介导的破骨细胞形成抑制。因此,c-Fos 的过表达可以通过激活 Beclin1 诱导的自噬来逆转 OPG 介导的破骨细胞形成抑制,表明 c-Fos 可能成为骨相关基础研究的新候选者。