American Association for Cancer Research
Browse
15357163mct201017-sup-256123_3_supp_7277041_qw510f.pdf (1.11 MB)

Supplementary Data from Potent Synergistic Effect on C-Myc–Driven Colorectal Cancers Using a Novel Indole-Substituted Quinoline with a Plk1 Inhibitor

Download (1.11 MB)
journal contribution
posted on 2023-04-03, 18:21 authored by Yanqi Xie, Wen Zhang, Lichao Guo, Liliia M. Kril, Kristin L. Begley, Vitaliy M. Sviripa, Xi Chen, Xifu Liu, Eun Y. Lee, Daheng He, Chi Wang, Tianyan Gao, Xiaoqi Liu, B. Mark Evers, David S. Watt, Chunming Liu

Supplementary methods and figures

Funding

NIH

Department of Defense

National Institute of General Medical Sciences

American Cancer Society

Biostatistics & Bioinformatics Shared Resource Facility

University of Kentucky Markey Cancer Center

History

ARTICLE ABSTRACT

Developing effective treatments for colorectal cancers through combinations of small-molecule approaches and immunotherapies present intriguing possibilities for managing these otherwise intractable cancers. During a broad-based, screening effort against multiple colorectal cancer cell lines, we identified indole-substituted quinolines (ISQ), such as N7,N7-dimethyl-3-(1-methyl-1H-indol-3-yl)quinoline-2,7-diamine (ISQ-1), as potent in vitro inhibitors of several cancer cell lines. We found that ISQ-1 inhibited Wnt signaling, a main driver in the pathway governing colorectal cancer development, and ISQ-1 also activated adenosine monophosphate kinase (AMPK), a cellular energy–homeostasis master regulator. We explored the effect of ISQs on cell metabolism. Seahorse assays measuring oxygen consumption rate (OCR) indicated that ISQ-1 inhibited complex I (i.e., NADH ubiquinone oxidoreductase) in the mitochondrial, electron transport chain (ETC). In addition, ISQ-1 treatment showed remarkable synergistic depletion of oncogenic c-Myc protein level in vitro and induced strong tumor remission in vivo when administered together with BI2536, a polo-like kinase-1 (Plk1) inhibitor. These studies point toward the potential value of dual drug therapies targeting the ETC and Plk-1 for the treatment of c-Myc–driven cancers.

Usage metrics

    Molecular Cancer Therapeutics

    Licence

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC