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Reactive oxygen species regulate signaling pathways induced by M1 muscarinic receptors in PC12M1 cells
M Mangelus1, A Kroyter, R Galron
1Department of Neurobiochemistry, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.
Abstract:
Activation of the m1 muscarinic receptor subtype in rat pheochromocytoma (PC12) cells stably expressing cloned m1 muscarinic acetylcholine receptors was previously shown to induce morphological changes and growth arrest. However, the signaling pathways which lead to these effects were not identified. In an attempt to characterize the intracellular signaling that might be involved in the muscarinic-induced effects, we investigated the role of reactive oxygen species in the regulation of these processes. Stimulation of the muscarinic receptor in these cells increased the intracellular concentrations of reactive oxygen species. Muscarinic activation induced intracellular signaling pathways that involve activation of Ras, extracellular signal-regulated kinase (ERK), and p38. These pathways were partially blocked when reactive oxygen species (ROS) production was prevented by the antioxidant N-acetylcysteine. Other muscarinic-induced signals, such as activation of c-Jun NH(2)-terminal kinase (JNK) or an increase in the binding activity of the transcription factors nuclear factor-kappa B and activator protein-1, were inhibited by the antioxidant dicoumarol. N-Acetylcysteine also blocked the growth arrest and changes in cell shape induced by stimulation of the muscarinic receptor in PC12M1 cells. These findings suggest that ROS act as second messengers in muscarinic-induced cellular signaling. Moreover, generation of ROS appears to be an early and critical intermediary event, which occurs immediately after stimulation of the muscarinic receptor and affects in a variety of mechanisms the muscarinic-mediated cellular signaling.
Insights
Reactive oxygen species (ROS) act as crucial second messengers in muscarinic receptor signaling. Their generation is an early event following muscarinic receptor stimulation, mediating cellular responses like growth arrest and morphological changes in PC12M1 cells.
Area of Science:
- Cellular Biology
- Neuroscience
- Biochemistry
Background:
- Muscarinic acetylcholine receptors (mAChRs) play vital roles in neuronal function.
- Activation of the m1 muscarinic receptor subtype in PC12 cells induces morphological changes and growth arrest.
- The intracellular signaling pathways mediating these mAChR effects were previously unidentified.
Purpose of the Study:
- To investigate the role of reactive oxygen species (ROS) in mediating m1 muscarinic receptor-induced cellular signaling.
- To characterize the intracellular signaling cascades involved in mAChR activation.
Main Methods:
- Utilized rat pheochromocytoma (PC12) cells stably expressing cloned m1 muscarinic acetylcholine receptors.
- Stimulated muscarinic receptors and measured intracellular ROS concentrations.
- Assessed the activation of signaling pathways including Ras, ERK, p38, JNK, NF-κB, and AP-1.
- Employed antioxidants N-acetylcysteine and dicoumarol to inhibit ROS production and signaling.
Main Results:
- Muscarinic receptor stimulation increased intracellular ROS levels.
- ROS generation was partially involved in the activation of Ras, ERK, and p38 pathways.
- Dicoumarol inhibited JNK activation and transcription factor binding (NF-κB, AP-1).
- N-acetylcysteine blocked mAChR-induced growth arrest and morphological changes.
Conclusions:
- ROS function as critical second messengers in m1 muscarinic receptor signaling.
- ROS generation is an early and essential event following muscarinic receptor activation.
- These findings elucidate a novel ROS-dependent signaling mechanism for mAChR-mediated cellular effects.
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