Involvement of cardiac glycosides targeting Na/K-ATPase in their inhibitory effects on c-Myc expression via its transcription, translation and proteasomal degradation

Author:

Tokugawa Muneshige1,Inoue Yasumichi1ORCID,Aoki Hiromasa2,Miyajima Chiharu1,Ishiuchi Kan'ichiro3,Tsurumi Kento1,Kujirai Chisane1,Morishita Daisuke14,Matsuno Michiyo5,Mizukami Hajime5,Ri Masaki6,Iida Shinsuke6,Makino Toshiaki3,Aoyama Mineyoshi2,Hayashi Hidetoshi1

Affiliation:

1. Nagoya City University Department of Cell Signaling, Graduate School of Pharmaceutical Sciences, , 3-1 Tanabe-dori, Mizuho-ku, Nagoya 467-8603, Japan

2. Nagoya City University Department of Pathobiology, Graduate School of Pharmaceutical Sciences, , 3-1 Tanabe-dori, Mizuho-ku, Nagoya 467-8603, Japan

3. Nagoya City University Department of Pharmacognosy, Graduate School of Pharmaceutical Sciences, , 3-1 Tanabe-dori, Mizuho-ku, Nagoya 467-8603, Japan

4. Chordia Therapeutics Inc. , 26-1 Muraoka-Higashi 2-chome, Fujisawa, Kanagawa 251-0012, Japan

5. Plant research section, The Kochi Prefectural Makino Botanical Garden , 4200-6 Godaiyama, Kochi 781-8125, Japan

6. Nagoya City University Department of Hematology and Oncology, Graduate School of Medical Sciences, , 1 Kawasumi, Mizuho-cho, Mizuho-ku, Nagoya 467-8601, Japan

Abstract

Abstract Cardiac glycosides (CGs) have been used for decades to treat heart failure and arrhythmic diseases. Recent non-clinical and epidemiological findings have suggested that CGs exhibit anti-tumor activities. Therefore, CGs may be repositioned as drugs for the treatment of cancer. A detailed understanding of the anti-cancer mechanisms of CGs is essential for their application to the treatment of targetable cancer types. To elucidate the factors associated with the anti-tumor effects of CGs, we performed transcriptome profiling on human multiple myeloma AMO1 cells treated with periplocin, one of the CGs. Periplocin significantly down-regulated the transcription of MYC (c-Myc), a well-established oncogene. Periplocin also suppressed c-Myc expression at the protein levels. This repression of c-Myc was also observed in several cell lines. To identify target proteins for the inhibition of c-Myc, we generated CG-resistant (C9) cells using a sustained treatment with digoxin. We confirmed that C9 cells acquired resistance to the inhibition of c-Myc expression and cell proliferation by CGs. Moreover, the sequencing of genomic DNA in C9 cells revealed the mutation of D128N in α1-Na/K-ATPase, indicating the target protein. These results suggest that CGs suppress c-Myc expression in cancer cells via α1-Na/K-ATPase, which provides further support for the anti-tumor activities of CGs.

Funder

Oriental Medicine Research Foundation and JST SRPING

JSPS, and Grants-in-Aid for Research

Japan Society for the Promotion of Science (JSPS), a Grant-in-Aid for Young Scientists

Grant-in-Aid for Scientific Research

Grants-in-Aid for Scientific Research

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. “Cardiac glycosides”—quo vaditis?—past, present, and future?;Naunyn-Schmiedeberg's Archives of Pharmacology;2024-07-15

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