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Published on: June 29, 2014
SIRT2 inhibition protects against cardiac hypertrophy and heart failure
Abstract:
Sirtuins (SIRT) exhibit deacetylation or ADP-ribosyltransferase activity and regulate a wide range of cellular processes in the nucleus, mitochondria and cytoplasm. The role of the only sirtuin that resides in the cytoplasm, SIRT2, in the development of heart failure (HF) and cardiac hypertrophy is not known. In this paper, we show that the hearts of mice with deletion of Sirt2 ( Sirt2 ) display improved cardiac function after ischemia-reperfusion (I/R) and pressure overload (PO), suggesting that SIRT2 exerts maladaptive effects in the heart in response to stress. Similar results were obtained in mice with cardiomyocyte-specific Sirt2 deletion. Mechanistic studies suggest that SIRT2 modulates cellular levels and activity of nuclear factor (erythroid-derived 2)-like 2 (NRF2), which results in reduced expression of antioxidant proteins. Deletion of Nrf2 in the hearts of Sirt2 mice reversed protection after PO. Finally, treatment of mouse hearts with a specific SIRT2 inhibitors reduces cardiac size and attenuates cardiac hypertrophy in response to PO. These data indicate that SIRT2 has detrimental effects in the heart and plays a role in the progression of HF and cardiac hypertrophy, which makes this protein a unique member of the SIRT family. Additionally, our studies provide a novel approach for treatment of cardiac hypertrophy by targeting SIRT2 pharmacologically, providing a novel avenue for the treatment of this disorder.
Insights
SIRT2 negatively impacts heart function during stress, contributing to heart failure and cardiac hypertrophy. Inhibiting SIRT2 offers a potential therapeutic strategy for these conditions.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Cellular Stress Response
Background:
- Sirtuins (SIRT) are key regulators of cellular processes.
- The specific role of cytoplasmic sirtuin 2 (SIRT2) in heart failure (HF) and cardiac hypertrophy remains unclear.
Approach:
- Investigated the function of SIRT2 in mouse models of cardiac stress, including ischemia-reperfusion (I/R) and pressure overload (PO).
- Utilized genetic deletion of SIRT2 in whole hearts and cardiomyocytes, alongside mechanistic studies involving nuclear factor (erythroid-derived 2)-like 2 (NRF2).
- Examined the therapeutic potential of SIRT2 inhibitors in a mouse model of cardiac hypertrophy.
Key Points:
- SIRT2 deletion in mice improved cardiac function following I/R and PO stress.
- SIRT2 negatively regulates NRF2 activity, leading to decreased antioxidant protein expression.
- NRF2 deletion reversed the protective effects of SIRT2 deletion during PO.
- Pharmacological inhibition of SIRT2 attenuated cardiac hypertrophy in response to PO.
Conclusions:
- SIRT2 plays a detrimental role in the stressed heart, promoting HF and cardiac hypertrophy.
- Targeting SIRT2 represents a novel pharmacological approach for treating cardiac hypertrophy and potentially heart failure.
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