We have shown that melatonin immediately and transiently stimulates intracellular free radical production on a set of leukocytes, possibly as a consequence of calmodulin binding. We show here that melatonin-induced ROS are produced by lipoxygenase (LOX), since they are prevented by a set of LOX inhibitors, and are accompanied by increase of the 5-LOX product 5-HETE. LOX activation is accompanied by strong liberation of AA; inhibition of Ca(2+)-independent, but not Ca(2+)-dependent, phospholipase A2 (PLA2), prevents both melatonin-induced arachidonic acid and ROS production, whereas LOX inhibition only prevents ROS, indicating that PLA2 is upstream with respect to LOX, as occurs in many signaling pathways. Chlorpromazine, an inhibitor of melatonin-calmodulin interaction, inhibits both ROS and arachidonic acid production, thus possibly placing calmodulin at the origin of a melatonin-induced pro-radical pathway. Interestingly, it is known that Ca(2+)-independent PLA2 binds to calmodulin: our results are compatible with PLA2 being liberated by melatonin from a steady-state calmodulin sequestration, thus initiating an arachidonate signal transduction. These results delineate a novel molecular pathway through which melatonin may participate to the inflammatory response.

Radogna, F., Sestili, P., Martinelli, C., Paolillo, M., Paternoster, L., Albertini, M., et al. (2009). Lipoxygenase-mediated pro-radical effect of melatonin via stimulation of arachidonic acid metabolism. TOXICOLOGY AND APPLIED PHARMACOLOGY, 238(2), 170-177 [10.1016/j.taap.2009.05.011].

Lipoxygenase-mediated pro-radical effect of melatonin via stimulation of arachidonic acid metabolism

GHIBELLI, LINA
2009-07-15

Abstract

We have shown that melatonin immediately and transiently stimulates intracellular free radical production on a set of leukocytes, possibly as a consequence of calmodulin binding. We show here that melatonin-induced ROS are produced by lipoxygenase (LOX), since they are prevented by a set of LOX inhibitors, and are accompanied by increase of the 5-LOX product 5-HETE. LOX activation is accompanied by strong liberation of AA; inhibition of Ca(2+)-independent, but not Ca(2+)-dependent, phospholipase A2 (PLA2), prevents both melatonin-induced arachidonic acid and ROS production, whereas LOX inhibition only prevents ROS, indicating that PLA2 is upstream with respect to LOX, as occurs in many signaling pathways. Chlorpromazine, an inhibitor of melatonin-calmodulin interaction, inhibits both ROS and arachidonic acid production, thus possibly placing calmodulin at the origin of a melatonin-induced pro-radical pathway. Interestingly, it is known that Ca(2+)-independent PLA2 binds to calmodulin: our results are compatible with PLA2 being liberated by melatonin from a steady-state calmodulin sequestration, thus initiating an arachidonate signal transduction. These results delineate a novel molecular pathway through which melatonin may participate to the inflammatory response.
15-lug-2009
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore BIO/13 - BIOLOGIA APPLICATA
English
Con Impact Factor ISI
Analysis of Variance; Reactive Oxygen Species; Lipoxygenase; Melatonin; Hydroxyeicosatetraenoic Acids; T-Lymphocytes; Humans; Second Messenger Systems; Cell Line, Tumor; Enzyme Activation; Signal Transduction; Arachidonic Acid; Monocytes; U937 Cells; Jurkat Cells; Phospholipases A2
Radogna, F., Sestili, P., Martinelli, C., Paolillo, M., Paternoster, L., Albertini, M., et al. (2009). Lipoxygenase-mediated pro-radical effect of melatonin via stimulation of arachidonic acid metabolism. TOXICOLOGY AND APPLIED PHARMACOLOGY, 238(2), 170-177 [10.1016/j.taap.2009.05.011].
Radogna, F; Sestili, P; Martinelli, C; Paolillo, M; Paternoster, L; Albertini, M; Accorsi, A; Gualandi, G; Ghibelli, L
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/41545
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