ANO1-downregulation induced by schisandrathera D: a novel therapeutic target for the treatment of prostate and oral cancers

Front Pharmacol. 2023 May 18:14:1163970. doi: 10.3389/fphar.2023.1163970. eCollection 2023.

Abstract

Anoctamin 1 (ANO1), a drug target for various cancers, including prostate and oral cancers, is an intracellular calcium-activated chloride ion channel that plays various physiopathological roles, especially in the induction of cancer growth and metastasis. In this study, we tested a novel compound isolated from Schisandra sphenanthera, known as schisandrathera D, for its inhibitory effect on ANO1. Schisandrathera D dose-dependently suppressed the ANO1 activation-mediated decrease in fluorescence of yellow fluorescent protein; however, it did not affect the adenosine triphosphate-induced increase in the intracellular calcium concentration or forskolin-induced cystic fibrosis transmembrane conductance regulator activity. Specifically, schisandrathera D gradually decreased the levels of ANO1 protein and significantly reduced the cell viability in ANO1-expressing cells when compared to those in ANO1-knockout cells. These effects could be attributed to the fact that schisandrathera D displayed better binding capacity to ANO1 protein than the previously known ANO1 inhibitor, Ani9. Finally, schisandrathera D increased the levels of caspase-3 and cleaved poly (ADP-ribose) polymerase 1, thereby indicating that its anticancer effect is mediated through apoptosis. Thus, this study highlights that schisandrathera D, which reduces ANO1 protein levels, has apoptosis-mediated anticancer effects in prostate and oral cancers, and thus, can be further developed into an anticancer agent.

Keywords: Schisandra sphenanthera; anoctamin 1; apoptosis; oral cancer; prostate cancer; protein reduction.

Grants and funding

This work was supported by the National Research Foundation of Korea (NRF) grant funded by the Koreangovernment (NRF-2021R1F1A1060694, NRF-2022M3A9J3073020, NRF-2022M3A9J4079468, NRF-2022R1F1A1063364 and NRF-2022K2A9A1A06088842). This research was supported by a research grant from “Creative KMEDI hub” in 2022 “(Project Name: Development of a selective ANO1 degrader that overcomes the resistance to NSCLC treatment/Project No: B-B-N-22-03)” and under the framework of Global Joint Research Promotion Program managed by the National Research Council of Science and Technology (NST, Grant No. 1711122746) of the Ministry of Science and ICT (MSIT).