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Published on: February 21, 2019
Therapeutic potential of natural compounds that regulate the activity of protein kinase C
Charleata A Carter1, Cynthia J M Kane
1Natural Therapeutics Biology Division, WinSwift Scientific, Little Rock, AR 72223, USA. cacarter@aristotle.net
Abstract:
Protein kinase C (PKC) is a family of serine/threonine kinases that regulates a variety of cell functions including proliferation, gene expression, cell cycle, differentiation, cytoskeletal organization, cell migration, and apoptosis. The PKC signal transduction cascade coordinates complex physiological events including normal tissue function and repair. Disruption of the cellular environment through genetic mutation, disease, injury, or exposure to pro-oxidants, alcohol, or other insults can induce pathological PKC activation. Aberrant PKC activation can lead to diseases of cellular dysregulation such as cancer and diabetes. Can aberrant activation of PKC be reversed? Even 25 years after the identification of PKC, therapeutic regulation of PKC activity remains an emerging field. Because the function of each isoform remains to be elucidated, isoform specific control of gene expression is a current challenge. Natural compounds are important regulators of PKC activity, with both preventive and therapeutic efficacy. Antioxidants including vitamin A (retinoids), vitamin C (ascorbic acid) and vitamin E (tocopherols) show promise for reversal of PKC activation. beta-carotene and retinoids function as anticarcinogenic agents and antagonize the biological effects of pro-oxidants on PKC. Vitamin E reverses the deleterious effects of hyperglycemia and diabetes by down-regulating PKC activity. Antioxidants in red wine provide cardioprotective effects. However, alcohol consumption also induces oxidative stress and disrupts PKC and retinoid function in the fetus and the adult. This review examines modulation of PKC activity by natural compounds and pharmacologic analogues which can be used effectively to prevent or treat common diseases associated with aberrant activation of PKC.
Insights
Natural compounds like vitamins A, C, and E can reverse aberrant Protein Kinase C (PKC) activation, offering therapeutic potential for diseases like cancer and diabetes.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Protein Kinase C (PKC) is crucial for cell functions, but its aberrant activation contributes to diseases like cancer and diabetes.
- Therapeutic regulation of PKC activity is an emerging field, with challenges in isoform-specific control.
Purpose of the Study:
- To review the modulation of PKC activity by natural compounds and pharmacologic analogues.
- To explore the potential of these compounds in preventing and treating diseases linked to aberrant PKC activation.
Main Methods:
- Review of scientific literature on PKC function and regulation.
- Examination of natural compounds (vitamins, antioxidants) and their effects on PKC pathways.
- Analysis of pharmacologic analogues for therapeutic potential.
Main Results:
- Natural compounds, particularly antioxidants like vitamins A, C, and E, show promise in reversing aberrant PKC activation.
- Beta-carotene and retinoids act as anticarcinogenic agents, counteracting pro-oxidant effects on PKC.
- Vitamin E effectively down-regulates PKC activity, mitigating hyperglycemia and diabetes effects.
Conclusions:
- Natural compounds and their analogues offer a promising strategy for preventing and treating diseases associated with aberrant PKC activation.
- Further research into isoform-specific PKC regulation is needed for targeted therapies.
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