RRC ID 52589
著者 Suvarna K, Honda K, Kondoh Y, Osada H, Watanabe N.
タイトル Identification of a small-molecule ligand of β-arrestin1 as an inhibitor of stromal fibroblast cell migration accelerated by cancer cells.
ジャーナル Cancer Med
Abstract Stromal fibroblasts, which occupy a major portion of the tumor microenvironment, play an important role in cancer metastasis. Thus, targeting of these fibroblasts activated by cancer cells (carcinoma-associated fibroblasts; CAFs) might aid in the improved treatment of cancer metastasis. NIH3T3 fibroblasts cocultured with MCF7 cells displayed enhanced migration compared to NIH3T3 fibroblasts cultured alone. We used this system to identify the small-molecule inhibitors responsible for their enhanced migration, a characteristic of CAFs. We selected β-arrestin1, which showed high expression in cocultured cells, as a molecular target for such inhibitors. Cofilin, a protein downstream of β-arrestin1, is activated/dephosphorylated in this condition. The small-molecule ligands of β-arrestin1 obtained by chemical array were then examined using a wound healing coculture assay. RKN5755 was identified as a selective inhibitor of activated fibroblasts. RKN5755 inhibited the enhanced migration of fibroblasts cocultured with cancer cells by binding to β-arrestin1 and interfering with β-arrestin1-mediated cofilin signaling pathways. Therefore, these results demonstrate the role of β-arrestin1 in the activation of fibroblasts and inhibiting this protein by small molecule inhibitor might be a potential therapeutic target for the stromal fibroblast activation (cancer-stroma interaction).
巻・号 7(3)
ページ 883-893
公開日 2018-3-1
DOI 10.1002/cam4.1339
PMID 29380537
PMC PMC5852355
MeSH Animals Cell Line, Tumor Cell Movement Cell Proliferation Fibroblasts / metabolism* Humans Ligands* Mice Neoplasms / genetics* Neoplasms / metabolism* Stromal Cells / metabolism* Tumor Microenvironment beta-Arrestin 1 / metabolism*
IF 3.491
引用数 2
リソース情報
ヒト・動物細胞 MCF7(RCB1904) NIH3T3 WI-38 HeLa A549