| Literature DB >> 28947152 |
Rie Sakane1, Kimito Kimura1, Yoshihisa Hirota2, Michiyasu Ishizawa3, Yuta Takagi2, Akimori Wada4, Shigefumi Kuwahara5, Makoto Makishima3, Yoshitomo Suhara6.
Abstract
Vitamin K is an essential cofactor of γ-glutamylcarboxylase as related to blood coagulation and bone formation. Menaquinone-4, one of the vitamin K homologues, is biosynthesized in the body and has various biological activities such as being a ligand for steroid and xenobiotic receptors, protection of neuronal cells from oxidative stress, and so on. From this background, we focused on the role of menaquinone in the differentiation activity of progenitor cells into neuronal cells and we synthesized novel vitamin K derivatives with modification of the ω-terminal side chain. We report here new vitamin K analogues, which introduced an alkylated phenyl group at the ω-terminal side chain. These compounds exhibited potent differentiation activity as compared to control.Entities:
Keywords: Menaquinone-4; Neuronal cells; SXR; Transcriptional activity; Vitamin K
Mesh:
Substances:
Year: 2017 PMID: 28947152 DOI: 10.1016/j.bmcl.2017.09.038
Source DB: PubMed Journal: Bioorg Med Chem Lett ISSN: 0960-894X Impact factor: 2.823