Methionine Adenosyltransferase 2B, HuR, and Sirtuin 1 Protein Cross-talk Impacts on the Effect of Resveratrol on Apoptosis and Growth in Liver Cancer Cells

Перекрестное взаимодействие белков метионинаденозилтрансферазы 2B, HuR и сиртуина 1 влияет на эффекты ресвератрола в отношении апоптоза и роста клеток рака печени
Heping Yang, Yuhua Zheng, Tony W.H. Li, Hui Peng, David Fernández‐Ramos, Maria Luz Martínez‐Chantar, Adriana L. Rojas, José M. Mato, Shelly C. Lu
2013-06-29

HuRMethionine adenosyltransferase 2BSirtuin 1liver cancer apoptosisresveratrol
Resveratrol is growth-suppressive and pro-apoptotic in liver cancer cells. Methionine adenosyltransferase 2B (MAT2B) encodes for two dominant variants V1 and V2 that positively regulate growth, and V1 is anti-apoptotic when overexpressed. Interestingly, crystal structure analysis of MAT2B protein (MATβ) protomer revealed two resveratrol binding pockets, which raises the question of the role of MAT2B in resveratrol biological activities. We found that resveratrol induced the expression of MAT2BV1 and V2 in a time- and dose-dependent manner by increasing transcription, mRNA, and protein stabilization. Following resveratrol treatment, HuR expression increased first, followed by SIRT1 and MAT2B. SIRT1 induction contributes to increased MAT2B transcription whereas HuR induction increased MAT2B mRNA stability. MATβ interacts with HuR and SIRT1, and resveratrol treatment enhanced these interactions while reducing the interaction between MATβ and MATα2. Because MATβ lowers the Ki of MATα2 for S-adenosylmethionine (AdoMet), this allowed steady-state AdoMet level to rise. Interaction among MATβ, SIRT1, and HuR increased stability of these proteins. Induction of MAT2B is a compensatory response to resveratrol as knocking down MAT2BV1 potentiated the resveratrol pro-apoptotic and growth-suppressive effects, whereas the opposite occurred with V1 overexpression. The same effect on growth occurred with MAT2BV2. In conclusion, resveratrol induces HuR, SIRT1, and MAT2B expression; the last may represent a compensatory response against apoptosis and growth inhibition. However, MATβ induction also facilitates SIRT1 activation, as the interaction stabilizes SIRT1. This complex interplay among MATβ, HuR, and SIRT1 has not been previously reported and suggests that these proteins may regulate each other's signaling.Background: Methionine adenosyltransferase 2B protein (MATβ) binds to resveratrol, but it exerts the opposite effects on growth and apoptosis.Results: Resveratrol induces HuR, SIRT1, and MATβ expression. These proteins interact, which stabilizes them. MATβ induction blunts the resveratrol effect on growth and apoptosis.Conclusion: MATβ-HuR-SIRT1 interaction impacts resveratrol actions.Significance: This is the first demonstration of MATβ in SIRT1 signaling. Resveratrol is growth-suppressive and pro-apoptotic in liver cancer cells. Methionine adenosyltransferase 2B (MAT2B) encodes for two dominant variants V1 and V2 that positively regulate growth, and V1 is anti-apoptotic when overexpressed. Interestingly, crystal structure analysis of MAT2B protein (MATβ) protomer revealed two resveratrol binding pockets, which raises the question of the role of MAT2B in resveratrol biological activities. We found that resveratrol induced the expression of MAT2BV1 and V2 in a time- and dose-dependent manner by increasing transcription, mRNA, and protein stabilization. Following resveratrol treatment, HuR expression increased first, followed by SIRT1 and MAT2B. SIRT1 induction contributes to increased MAT2B transcription whereas HuR induction increased MAT2B mRNA stability. MATβ interacts with HuR and SIRT1, and resveratrol treatment enhanced these interactions while reducing the interaction between MATβ and MATα2. Because MATβ lowers the Ki of MATα2 for S-adenosylmethionine (AdoMet), this allowed steady-state AdoMet level to rise. Interaction among MATβ, SIRT1, and HuR increased stability of these proteins. Induction of MAT2B is a compensatory response to resveratrol as knocking down MAT2BV1 potentiated the resveratrol pro-apoptotic and growth-suppressive effects, whereas the opposite occurred with V1 overexpression. The same effect on growth occurred with MAT2BV2. In conclusion, resveratrol induces HuR, SIRT1, and MAT2B expression; the last may represent a compensatory response against apoptosis and growth inhibition. However, MATβ induction also facilitates SIRT1 activation, as the interaction stabilizes SIRT1. This complex interplay among MATβ, HuR, and SIRT1 has not been previously reported and suggests that these proteins may regulate each other's signaling. Background: Methionine adenosyltransferase 2B protein (MATβ) binds to resveratrol, but it exerts the opposite effects on growth and apoptosis. Results: Resveratrol induces HuR, SIRT1, and MATβ expression. These proteins interact, which stabilizes them. MATβ induction blunts the resveratrol effect on growth and apoptosis. Conclusion: MATβ-HuR-SIRT1 interaction impacts resveratrol actions. Significance: This is the first demonstration of MATβ in SIRT1 signaling.
1
HuR expression rises before SIRT1 and MAT2B; SIRT1 promotes MAT2B transcription, while HuR enhances MAT2B mRNA stability.
2
MAT2B induction is compensatory: MAT2BV1 knockdown enhances resveratrol-induced apoptosis and growth suppression, whereas V1 or V2 overexpression reduces these effects.
3
MATβ interaction with SIRT1 facilitates SIRT1 stabilization and activation, revealing previously unreported cross-talk among MATβ, HuR, and SIRT1.
4
Resveratrol induces MAT2B variants V1 and V2 in liver cancer cells through increased transcription and stabilization of their mRNA and proteins.
5
Resveratrol strengthens MATβ interactions with HuR and SIRT1, stabilizing these proteins, while weakening MATβ interaction with MATα2 and increasing steady-state AdoMet levels.

Liver cancer cells and the MAT2B/HuR/SIRT1 protein network exposed to resveratrol

The molecular cross-talk and compensatory role of MAT2B, HuR, and SIRT1 in regulating resveratrol-induced apoptosis and growth inhibition

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2013-06-29
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Heping Yang
Yuhua Zheng
Tony W.H. Li
Hui Peng
David Fernández‐Ramos
Maria Luz Martínez‐Chantar
Adriana L. Rojas
José M. Mato
Shelly C. Lu
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