生物
表观遗传学
神经生长因子
细胞生物学
细胞分化
间充质干细胞
DNA甲基化
胚胎干细胞
作者
Zhenqing Liu,Jin Sook Suh,Peng Deng,Olga Bezouglaia,Megan Do,Mojan Mirnia,Zhong-Kai Cui,Min Lee,Tara Aghaloo,Cun-Yu Wang,Christine Hong
标识
DOI:10.1093/stmcls/sxac042
摘要
Nerve growth factor (NGF) is the best-characterized neurotrophin and primarily recognized for its key role in the embryonic development of the nervous system and neuronal cell survival/differentiation. Recently, unexpected actions of NGF in bone regeneration have emerged as NGF is able to enhance the osteogenic differentiation of mesenchymal stem cells. However, little is known regarding how NGF signaling regulates osteogenic differentiation through epigenetic mechanisms. In this study, using human dental mesenchymal stem cells (DMSCs), we demonstrated that NGF mediates osteogenic differentiation through p75 NTR, a low-affinity nerve growth factor receptor. P75 NTR-mediated NGF signaling activates JNK cascade and the expression of KDM4B, an activating histone demethylase by removing repressive H3K9me3 epigenetic marks. Mechanistically, NGF-activated c-Jun binds to the KDM4B promoter region and directly upregulates KDM4B expression. Subsequently, KDM4B directly and epigenetically activates DLX5, a master osteogenic gene, by demethylating H3K9me3 marks. Furthermore, we revealed that KDM4B and c-Jun from JNK signaling pathway work in concert to regulate NGF-mediated osteogenic differentiation through simultaneous recruitment to the promoter region of DLX5. We identified KDM4B as a key epigenetic regulator during the NGF-mediated osteogenesis both in vitro and in vivo using the calvarial defect regeneration mouse model. In conclusion, our study thoroughly elucidated the molecular and epigenetic mechanisms during NGF-mediated osteogenesis.
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