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Published on: September 30, 2016
Protein kinase C as a molecular target for cancer prevention by selenocompounds
1Department of Cell and Neurobiology, Keck School of Medicine, University of Southern California, Los Angeles, CA 90033, USA. rgopalak@hsc.usc.edu
Abstract:
Selenium is a very effective cancer-preventive agent, suppressing tumor promotion and early stages of tumor progression. However, the mechanisms by which selenium exerts these cancer-preventive actions are not known. Protein kinase C (PKC) is a receptor for certain tumor promoters and also plays a crucial role in events related to tumor progression. Therefore, it is not only a potential target for the cancer-preventive activity of selenium, but also it has the structural basis for interaction with selenium. Redox-active selenocompounds can inactivate PKC, particularly the Ca(2+)-dependent isozymes, by reacting with the critical cysteine-rich regions present within the catalytic domain while, in some cases, also reacting with the cysteine residues present within the zinc-fingers of the regulatory domain. The selenoprotein thioredoxin reductase (TR), acting through thioredoxin, reverses the inactivation of PKC induced by selenometabolites. Furthermore, TR, through a direct interaction involving its selenosulfur center with the zinc-thiolates of PKC, can reverse the redox modification of this kinase induced by selenometabolites. Thus the selenometabolite-induced toxicity is reversed by a selenoprotein, and therefore an interrelationship exists between these two mechanisms of selenium actions. Moreover, this also explains how a resistance to selenium develops in advanced tumor cells probably due to an overexpression of functional TR. Selenium-induced inactivation of PKC may, at least in part, be responsible for the selenium-induced inhibition of tumor promotion, cell growth, invasion, and metastasis, as well as for the induction of apoptosis.
Insights
Selenium compounds can prevent cancer by inactivating Protein Kinase C (PKC). Selenoprotein thioredoxin reductase (TR) reverses this inactivation, explaining selenium
Area of Science:
- Biochemistry
- Cancer Research
- Molecular Biology
Background:
- Selenium is a potent cancer-preventive agent, but its mechanisms are unclear.
- Protein Kinase C (PKC) is implicated in tumor promotion and progression.
- PKC's structure suggests a potential interaction with selenium compounds.
Purpose of the Study:
- To investigate the mechanisms underlying selenium's cancer-preventive effects.
- To explore the role of Protein Kinase C (PKC) in selenium's action.
- To elucidate the interaction between selenium compounds, PKC, and selenoprotein thioredoxin reductase (TR).
Main Methods:
- Investigated the interaction of redox-active selenocompounds with PKC isozymes.
- Examined the role of selenoprotein thioredoxin reductase (TR) in reversing PKC inactivation.
- Analyzed the direct interaction between TR and PKC.
Main Results:
- Redox-active selenocompounds inactivate PKC by modifying cysteine residues in catalytic and regulatory domains.
- Selenoprotein thioredoxin reductase (TR) reverses selenium-induced PKC inactivation through thioredoxin.
- TR directly interacts with PKC, reversing redox modifications induced by selenometabolites.
- Overexpression of TR in advanced tumors may confer resistance to selenium.
Conclusions:
- Selenium's cancer-preventive effects are partly mediated by PKC inactivation.
- The interplay between selenocompounds and TR explains selenium's action and resistance mechanisms.
- Selenium's inhibition of tumor promotion, growth, invasion, metastasis, and induction of apoptosis may involve PKC inactivation.
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