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Published on: July 5, 2017
Natural polyphenols that selectively inhibit CaM kinase phosphatase (CaMKP/PPM1F/POPX2) suppress cancer cell
Jia Wang1, Kazutoshi Akizuki1, Hana Ozaki1
1Laboratory of Molecular Brain Science, Graduate School of Integrated Sciences for Life, Hiroshima University, Higashi-Hiroshima, 739-8521, Japan.
Abstract:
CaM kinase phosphatase (CaMKP/PPM1F/POPX2) is widely expressed in various tissues and organs, and increasing evidence suggests its involvement in the pathogenesis of several diseases, including cancers. In this study, we identified a class of natural polyphenolic compounds with a pyrogallol structure as potent inhibitors of CaMKP. These compounds selectively inhibited CaMKP via protein carbonylation, while showing negligible effects on PPM1A or λ-phosphatase. Among the polyphenols tested, dihydromyricetin, myricetin, and delphinidin potently inhibited CaMKP, with dihydromyricetin being more potent than ethyl gallate, which was recently reported as a selective CaMKP inhibitor. The carbonylation of CaMKP by these polyphenols was restored by a free radical scavenger, cysteamine, suggesting that this inhibitory process involves free radical-mediated oxidative reactions. Taxifolin, an analogue of dihydromyricetin lacking one phenolic hydroxy group, failed to induce the carbonylation or inhibition of CaMKP, indicating the essential role of the pyrogallol moiety. Consistent with these findings, dihydromyricetin and myricetin significantly inhibited the migration of CaMKP-overexpressing MDA-MB-231 breast cancer cells, whereas their structural analogues taxifolin and quercetin showed no or only weak inhibitory effects. In addition, some other pyrogallol-containing polyphenols tested (delphinidin, scutellarein, baicalein) also exhibited significant inhibitory effects. In contrast, these polyphenols showed little to no inhibitory effects on the migration of T47D cells, in which CaMKP expression level is relatively low. Notably, the inhibition of migration by these pyrogallol-containing polyphenols, except quercetin, was not accompanied by significant cytotoxicity. Thus, these polyphenols are promising candidates for suppressing CaMKP-dependent cancer metastasis with minimal side effects.
Insights
Natural polyphenols with a pyrogallol structure potently inhibit CaM kinase phosphatase (CaMKP) through oxidative carbonylation. Dihydromyricetin and myricetin effectively suppressed cancer cell migration, suggesting potential for cancer metastasis treatment.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- CaM kinase phosphatase (CaMKP/PPM1F/POPX2) is implicated in cancer pathogenesis.
- Natural compounds are explored for therapeutic potential in cancer treatment.
Purpose of the Study:
- To identify natural compounds that inhibit CaMKP.
- To investigate the mechanism of CaMKP inhibition by polyphenols.
- To evaluate the anti-migratory effects of these compounds on cancer cells.
Main Methods:
- In vitro screening of polyphenolic compounds for CaMKP inhibitory activity.
- Protein carbonylation assays to determine the mechanism of inhibition.
- Cell migration assays using breast cancer cell lines (MDA-MB-231 and T47D).
- Assessment of cytotoxicity.
Main Results:
- Polyphenols with a pyrogallol structure, including dihydromyricetin and myricetin, selectively inhibited CaMKP via protein carbonylation.
- Inhibition involved free radical-mediated oxidative reactions.
- Dihydromyricetin and myricetin significantly inhibited the migration of CaMKP-overexpressing breast cancer cells.
- These effects were specific to CaMKP levels and generally lacked cytotoxicity.
Conclusions:
- Pyrogallol-containing polyphenols are potent, selective CaMKP inhibitors.
- These compounds, particularly dihydromyricetin, show promise for suppressing cancer metastasis.
- The mechanism involves oxidative protein carbonylation, offering a novel therapeutic strategy.
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