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Melatonin as a proteasome inhibitor. Is there any clinical evidence?
Jerry Vriend1, Russel J Reiter2
1Department of Human Anatomy and Cell Science, University of Manitoba, Winnipeg, Manitoba, Canada.
Abstract:
Proteasome inhibitors and melatonin are both intimately involved in the regulation of major signal transduction proteins including p53, cyclin p27, transcription factor NF-κB, apoptotic factors Bax and Bim, caspase 3, caspase 9, anti-apoptotic factor Bcl-2, TRAIL, NRF2 and transcription factor beta-catenin. The fact that these factors are shared targets of the proteasome inhibitor bortezomib and melatonin suggests the working hypothesis that melatonin is a proteasome inhibitor. Supporting this hypothesis is the fact that melatonin shares with bortezomib a selective pro-apoptotic action in cancer cells. Furthermore, both bortezomib and melatonin increase the sensitivity of human glioma cells to TRAIL-induced apoptosis. Direct evidence for melatonin inhibition of the proteasome was recently found in human renal cancer cells. We raise the issue whether melatonin should be investigated in combination with proteasome inhibitors to reduce toxicity, to reduce drug resistance, and to enhance efficacy. This may be particularly valid for hematological malignancies in which proteasome inhibitors have been shown to be useful. Further studies are necessary to determine whether the actions of melatonin on cellular signaling pathways are due to a direct inhibitory effect on the catalytic core of the proteasome, due to an inhibitory action on the regulatory particle of the proteasome, or due to an indirect effect of melatonin on phosphorylation of signal transducing factors.
Insights
Melatonin may act as a proteasome inhibitor, sharing targets with drugs like bortezomib. This suggests potential combination therapies for cancer, particularly hematological malignancies, to improve efficacy and reduce toxicity.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Proteasome inhibitors and melatonin regulate key signaling proteins like p53, NF-κB, and apoptotic factors.
- Shared targets suggest a potential link between melatonin and proteasome inhibition.
Purpose of the Study:
- To investigate the hypothesis that melatonin functions as a proteasome inhibitor.
- To explore the potential of combining melatonin with proteasome inhibitors for cancer therapy.
Main Methods:
- Comparative analysis of signaling protein regulation by bortezomib and melatonin.
- Assessment of selective pro-apoptotic effects in cancer cells.
- Evaluation of TRAIL-induced apoptosis sensitivity in human glioma cells.
- Direct evidence of proteasome inhibition by melatonin in renal cancer cells.
Main Results:
- Melatonin and bortezomib target common signal transduction proteins.
- Melatonin exhibits selective pro-apoptotic effects in cancer cells, similar to bortezomib.
- Both agents enhance TRAIL-induced apoptosis in human glioma cells.
- Direct evidence confirms melatonin's proteasome inhibitory activity in renal cancer cells.
Conclusions:
- Melatonin's shared targets and effects with proteasome inhibitors support its role as a proteasome inhibitor.
- Combination therapy with melatonin and proteasome inhibitors warrants investigation to enhance efficacy and reduce toxicity in cancers, especially hematological malignancies.
- Further research is needed to elucidate the precise mechanism of melatonin's proteasome inhibition.
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