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Interferon-alpha2b reduces phosphorylation and activity of MEK and ERK through a Ras/Raf-independent mechanism
1Institute of Human Virology, University of Maryland Biotechnology Institute, Baltimore, Maryland 21201, USA.
Abstract:
Interferon (IFN)-alpha affects the growth, differentiation and function of various cell types by transducing regulatory signals through the Janus tyrosine kinase/signal transducers of activation and transcription (Jak/STAT) pathway. The signalling pathways employing the mitogen-activated ERK-activating kinase (MEK) and the extracellular-regulated kinase (ERK) are critical in growth factors signalling. Engagement of the receptors, and subsequent stimulation of Ras and Raf, initiates a phosphorylative cascade leading to activation of several proteins among which MEK and ERK play a central role in routing signals critical in controlling cell development, activation and proliferation. We demonstrate here that 24-48 h following treatment of transformed T- and monocytoid cell lines with recombinant human IFN-alpha2b both the phosphorylation and activity of MEK1 and its substrates ERK1/2 were reduced. In contrast, the activities of the upstream molecules Ras and Raf-1 were not affected. No effect on MEK/ERK activity was observed upon short-term exposure (1-30 min) to IFN. The anti-proliferative effect of IFN-alpha was increased by the addition in the culture medium of a specific inhibitor of MEK, namely PD98059. In conclusion, our results indicate that IFN-alpha regulates the activity of the MEK/ERK pathway and consequently modulates cellular proliferation through a Ras/Raf-independent mechanism. Targeting the MEK/ERK pathway may strengthen the IFN-mediated anti-cancer effect.
Insights
Interferon-alpha (IFN-alpha) inhibits MEK/ERK pathway activity in cancer cells, independent of Ras/Raf signaling. This finding suggests targeting the MEK/ERK pathway could enhance IFN-alpha
Area of Science:
- Cellular Biology
- Molecular Biology
- Immunology
Background:
- Interferon-alpha (IFN-alpha) is a cytokine that regulates cell growth and function via the Jak/STAT pathway.
- The mitogen-activated protein kinase (MAPK) pathway, including MEK and ERK, is crucial for growth factor signaling and cell proliferation.
Purpose of the Study:
- To investigate the effect of IFN-alpha on the MEK/ERK signaling pathway.
- To determine if IFN-alpha modulates cellular proliferation through the MEK/ERK pathway.
Main Methods:
- Treatment of transformed T- and monocytoid cell lines with recombinant human IFN-alpha2b.
- Assessing the phosphorylation and activity of MEK1 and ERK1/2.
- Evaluating the impact of MEK inhibitor PD98059 on IFN-alpha's anti-proliferative effect.
Main Results:
- IFN-alpha (24-48h) reduced MEK1 and ERK1/2 phosphorylation and activity in cancer cell lines.
- Ras and Raf-1 activities remained unaffected by IFN-alpha treatment.
- Short-term IFN-alpha exposure (1-30 min) did not alter MEK/ERK activity.
- MEK inhibitor PD98059 enhanced IFN-alpha's anti-proliferative effect.
Conclusions:
- IFN-alpha negatively regulates the MEK/ERK pathway in a Ras/Raf-independent manner.
- Modulation of the MEK/ERK pathway contributes to IFN-alpha's anti-proliferative effects.
- Targeting the MEK/ERK pathway may potentiate IFN-alpha's anti-cancer efficacy.