TY - JOUR
T1 - Cell-based screen identifies a new potent and highly selective CK2 inhibitor for modulation of circadian rhythms and cancer cell growth
AU - Oshima, Tsuyoshi
AU - Niwa, Yoshimi
AU - Kuwata, Keiko
AU - Srivastava, Ashutosh
AU - Hyoda, Tomoko
AU - Tsuchiya, Yoshiki
AU - Kumagai, Megumi
AU - Tsuyuguchi, Masato
AU - Tamaru, Teruya
AU - Sugiyama, Akiko
AU - Ono, Natsuko
AU - Zolboot, Norjin
AU - Aikawa, Yoshiki
AU - Oishi, Shunsuke
AU - Nonami, Atsushi
AU - Arai, Fumio
AU - Hagihara, Shinya
AU - Yamaguchi, Junichiro
AU - Tama, Florence
AU - Kunisaki, Yuya
AU - Yagita, Kazuhiro
AU - Ikeda, Masaaki
AU - Kinoshita, Takayoshi
AU - Kay, Steve A.
AU - Itami, Kenichiro
AU - Hirota, Tsuyoshi
N1 - Publisher Copyright:
Copyright © 2019 The Authors, some rights reserved.
PY - 2019/1/23
Y1 - 2019/1/23
N2 - Compounds targeting the circadian clock have been identified as potential treatments for clock-related diseases, including cancer. Our cell-based phenotypic screen revealed uncharacterized clock-modulating compounds. Through affinity-based target deconvolution, we identified GO289, which strongly lengthened circadian period, as a potent and selective inhibitor of CK2. Phosphoproteomics identified multiple phosphorylation sites inhibited by GO289 on clock proteins, including PER2 S693. Furthermore, GO289 exhibited cell type–dependent inhibition of cancer cell growth that correlated with cellular clock function. The x-ray crystal structure of the CK2-GO289 complex revealed critical interactions between GO289 and CK2-specific residues and no direct interaction of GO289 with the hinge region that is highly conserved among kinases. The discovery of GO289 provides a direct link between the circadian clock and cancer regulation and reveals unique design principles underlying kinase selectivity.
AB - Compounds targeting the circadian clock have been identified as potential treatments for clock-related diseases, including cancer. Our cell-based phenotypic screen revealed uncharacterized clock-modulating compounds. Through affinity-based target deconvolution, we identified GO289, which strongly lengthened circadian period, as a potent and selective inhibitor of CK2. Phosphoproteomics identified multiple phosphorylation sites inhibited by GO289 on clock proteins, including PER2 S693. Furthermore, GO289 exhibited cell type–dependent inhibition of cancer cell growth that correlated with cellular clock function. The x-ray crystal structure of the CK2-GO289 complex revealed critical interactions between GO289 and CK2-specific residues and no direct interaction of GO289 with the hinge region that is highly conserved among kinases. The discovery of GO289 provides a direct link between the circadian clock and cancer regulation and reveals unique design principles underlying kinase selectivity.
UR - https://www.scopus.com/pages/publications/85060281432
UR - https://www.scopus.com/pages/publications/85060281432#tab=citedBy
U2 - 10.1126/sciadv.aau9060
DO - 10.1126/sciadv.aau9060
M3 - Article
C2 - 30746467
AN - SCOPUS:85060281432
SN - 2375-2548
VL - 5
JO - Science Advances
JF - Science Advances
IS - 1
M1 - eaau9060
ER -