5′-methylthioadenosine modulates the inflammatory response to endotoxin in mice and in rat hepatocytes†

5′-Метилтиоаденозин модулирует воспалительный ответ на эндотоксин у мышей и в гепатоцитах крыс†
Henar Hevia, Marta Varela‐Rey, Fernando J. Corrales, Carmen Berasain, Maria Luz Martínez‐Chantar, Ujue M. Latasa, Shelly C. Lu, José M. Mato, Elena R. García–Trevijano, Matías A. Ávila
2004-03-26

5′-methylthioadenosine (MTA)NFκB signalinginducible nitric oxide synthaselipopolysaccharide-induced inflammationp38 MAPK
5'-methylthioadenosine (MTA) is a nucleoside generated from S-adenosylmethionine (AdoMet) during polyamine synthesis. Recent evidence indicates that AdoMet modulates in vivo the production of inflammatory mediators. We have evaluated the anti-inflammatory properties of MTA in bacterial lipopolysaccharide (LPS) challenged mice, murine macrophage RAW 264.7 cells, and isolated rat hepatocytes treated with pro-inflammatory cytokines. MTA administration completely prevented LPS-induced lethality. The life-sparing effect of MTA was accompanied by the suppression of circulating tumor necrosis factor-alpha (TNF-alpha), inducible NO synthase (iNOS) expression, and by the stimulation of IL-10 synthesis. These responses to MTA were also observed in LPS-treated RAW 264.7 cells. MTA prevented the transcriptional activation of iNOS by pro-inflammatory cytokines in isolated hepatocytes, and the induction of cyclooxygenase 2 (COX2) in RAW 264.7 cells. MTA inhibited the activation of p38 mitogen-activated protein kinase (MAPK), c-jun phosphorylation, inhibitor kappa B alpha (IkappaBalpha) degradation, and nuclear factor kappaB (NFkappaB) activation, all of which are signaling pathways related to the generation of inflammatory mediators. These effects were independent of the metabolic conversion of MTA into AdoMet and the potential interaction of MTA with the cAMP signaling pathway, central to the anti-inflammatory actions of its structural analog adenosine. In conclusion, these observations demonstrate novel immunomodulatory properties for MTA that may be of value in the management of inflammatory diseases.
1
MTA blocked p38 MAPK activation, c-Jun phosphorylation, IκBα degradation, and NFκB activation—pathways involved in inflammatory mediator production.
2
MTA completely prevented LPS-induced lethality in mice, demonstrating a marked protective effect against endotoxin challenge.
3
MTA inhibited cytokine-induced iNOS transcription in rat hepatocytes and COX2 induction in RAW 264.7 cells.
4
MTA suppressed circulating TNF-α and iNOS expression while stimulating IL-10 synthesis in LPS-treated mice and RAW 264.7 macrophages.
5
MTA’s anti-inflammatory effects were independent of conversion to AdoMet and interaction with cAMP signaling, indicating distinct immunomodulatory mechanisms.

5′-methylthioadenosine (MTA) in LPS-challenged mice, RAW 264.7 macrophages, and cytokine-treated rat hepatocytes

MTA-mediated modulation of inflammatory responses and signaling pathways, including TNF-α, iNOS, IL-10, COX2, p38 MAPK, c-jun, IκBα, and NFκB

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2004-03-26
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Henar Hevia
Marta Varela‐Rey
Fernando J. Corrales
Carmen Berasain
Maria Luz Martínez‐Chantar
Ujue M. Latasa
Shelly C. Lu
José M. Mato
Elena R. García–Trevijano
Matías A. Ávila
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