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February 1, 2012Circulation293 citationsOpen Access

Rheb is a Critical Regulator of Autophagy During Myocardial Ischemia

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SSSebastiano SciarrettaPZPeiyong ZhaiDSDan Shao

Key Result

Inactivation of Rheb protects cardiomyocytes during energy deprivation and acute myocardial ischemia by activating autophagy, reducing infarct size and cell death.

Structured PICO

Does modulation of Rheb and mTORC1 activity affect cardiomyocyte survival and infarct size during myocardial ischemia?

P
Population
In vitro cardiomyocyte models of glucose deprivation and in vivo mouse models of acute myocardial ischemia, including mice with high-fat diet-induced obesity and metabolic syndrome
I
Intervention
Modulation of Rheb and mTORC1 activity (Rheb overexpression, Rheb knockdown, pharmacological and genetic inhibition of mTORC1)
C
Comparator
Control conditions (unmodified cells/mice)
O
Outcome
Cardiomyocyte survival and infarct sizesurrogate

Inactivation of Rheb protects cardiomyocytes during ischemia by activating autophagy, highlighting Rheb and mTORC1 as potential therapeutic targets to reduce myocardial damage, particularly in obese patients.

Abstract

BACKGROUND: Rheb is a GTP-binding protein that promotes cell survival and mediates the cellular response to energy deprivation (ED). The role of Rheb in the regulation of cell survival during ED has not been investigated in the heart. METHODS AND RESULTS: Rheb is inactivated during cardiomyocyte (CM) glucose deprivation (GD) in vitro, and during acute myocardial ischemia in vivo. Rheb inhibition causes mTORC1 inhibition, because forced activation of Rheb, through Rheb overexpression in vitro and through inducible cardiac-specific Rheb overexpression in vivo, restored mTORC1 activity. Restoration of mTORC1 activity reduced CM survival during GD and increased infarct size after ischemia, both of which were accompanied by inhibition of autophagy, whereas Rheb knockdown increased autophagy and CM survival. Rheb inhibits autophagy mostly through Atg7 depletion. Restoration of autophagy, through Atg7 reexpression and inhibition of mTORC1, increased cellular ATP content and reduced endoplasmic reticulum stress, thereby reducing CM death induced by Rheb activation. Mice with high-fat diet-induced obesity and metabolic syndrome (HFD mice) exhibited deregulated cardiac activation of Rheb and mTORC1, particularly during ischemia. HFD mice presented inhibition of cardiac autophagy and displayed increased ischemic injury. Pharmacological and genetic inhibition of mTORC1 restored autophagy and abrogated the increase in infarct size observed in HFD mice, but they failed to protect HFD mice in the presence of genetic disruption of autophagy. CONCLUSIONS: Inactivation of Rheb protects CMs during ED through activation of autophagy. Rheb and mTORC1 may represent therapeutic targets to reduce myocardial damage during ischemia, particularly in obese patients.

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Cite This Study

Sciarretta et al. (2012) studied Myocardial ischemia. Rheb modulation and mTORC1 inhibition was evaluated on Cardiomyocyte survival and infarct size. Inactivation of Rheb protects cardiomyocytes during energy deprivation and acute myocardial ischemia by activating autophagy, reducing infarct size and cell death.

synapsesocial.com/papers/6a0a1e0900274e073d45d9afhttps://doi.org/10.1161/circulationaha.111.078212
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