RRC ID 64734
著者 Sugamori Y, Mise-Omata S, Maeda C, Aoki S, Tabata Y, Murali R, Yasuda H, Udagawa N, Suzuki H, Honma M, Aoki K.
タイトル Peptide drugs accelerate BMP-2-induced calvarial bone regeneration and stimulate osteoblast differentiation through mTORC1 signaling.
ジャーナル Bioessays
Abstract Both W9 and OP3-4 were known to bind the receptor activator of NF-κB ligand (RANKL), inhibiting osteoclastogenesis. Recently, both peptides were shown to stimulate osteoblast differentiation; however, the mechanism underlying the activity of these peptides remains to be clarified. A primary osteoblast culture showed that rapamycin, an mTORC1 inhibitor, which was recently demonstrated to be an important serine/threonine kinase for bone formation, inhibited the peptide-induced alkaline phosphatase activity. Furthermore, both peptides promoted the phosphorylation of Akt and S6K1, an upstream molecule of mTORC1 and the effector molecule of mTORC1, respectively. In the in vivo calvarial defect model, W9 and OP3-4 accelerated BMP-2-induced bone formation to a similar extent, which was confirmed by histomorphometric analyses using fluorescence images of undecalcified sections. Our data suggest that these RANKL-binding peptides could stimulate the mTORC1 activity, which might play a role in the acceleration of BMP-2-induced bone regeneration by the RANKL-binding peptides.
巻・号 38(8)
ページ 717-25
公開日 2016-8-1
DOI 10.1002/bies.201600104
PMID 27345003
PMC PMC5094554
MeSH Animals Bone Morphogenetic Protein 2* Bone Regeneration / drug effects* Cell Differentiation* Male Mechanistic Target of Rapamycin Complex 1 Mice Multiprotein Complexes Oligopeptides / metabolism Oligopeptides / pharmacology* Osteoblasts / drug effects* Osteoblasts / metabolism Osteoblasts / physiology Protein Binding RANK Ligand / metabolism Signal Transduction TOR Serine-Threonine Kinases
IF 4.631
リソース情報
ヒト・動物細胞 ST2(RCB0224)