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Published on: February 15, 2022
Vascular smooth muscle cell sirtuin 1 protects against DNA damage and inhibits atherosclerosis
Isabelle Gorenne1, Sheetal Kumar, Kelly Gray
1University of Cambridge, Addenbrooke's Hospital, Cambridge, UK. icg23g@googlemail.com
Background:
Vascular smooth muscle cells (VSMCs) in human atherosclerosis manifest extensive DNA damage and activation of the DNA damage response, a pathway that coordinates cell cycle arrest and DNA repair, or can trigger apoptosis or cell senescence. Sirtuin 1 deacetylase (SIRT1) regulates cell ageing and energy metabolism and regulates the DNA damage response through multiple targets. However, the direct role of SIRT1 in atherosclerosis and how SIRT1 in VSMCs might regulate atherosclerosis are unknown.
Methods And Results:
SIRT1 expression was reduced in human atherosclerotic plaques and VSMCs both derived from plaques and undergoing replicative senescence. SIRT1 inhibition reduced DNA repair and induced apoptosis, in part, through reduced activation of the repair protein Nijmegen Breakage Syndrome-1 but not p53. Fat feeding reduced SIRT1 and induced DNA damage in VSMCs. VSMCs from mice expressing inactive truncated SIRT1 (Δex4) showed increased oxidized low-density lipoprotein-induced DNA damage and senescence. ApoE(-/-) mice expressing SIRT1(Δex4) only in smooth muscle cells demonstrated increased DNA damage response activation and apoptosis, increased atherosclerosis, reduced relative fibrous cap thickness, and medial degeneration.
Conclusions:
SIRT1 is reduced in human atherosclerosis and is a critical regulator of the DNA damage response and survival in VSMCs. VSMC SIRT1 protects against DNA damage, medial degeneration, and atherosclerosis.
Insights
Sirtuin 1 (SIRT1) is reduced in atherosclerosis, where it protects vascular smooth muscle cells (VSMCs) from DNA damage. Restoring VSMC SIRT1 may prevent medial degeneration and atherosclerosis progression.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Cellular Aging
Background:
- Vascular smooth muscle cells (VSMCs) in atherosclerosis exhibit DNA damage and activate DNA damage response pathways.
- Sirtuin 1 (SIRT1) influences aging and metabolism and modulates DNA damage response, but its role in atherosclerosis is unclear.
Purpose of the Study:
- To investigate the role of SIRT1 in VSMCs within the context of atherosclerosis.
- To determine if SIRT1 deficiency in VSMCs contributes to atherosclerotic development.
Main Methods:
- Assessed SIRT1 expression in human atherosclerotic plaques and VSMCs.
- Inhibited SIRT1 in VSMCs and analyzed DNA repair, apoptosis, and senescence.
- Utilized mouse models with SIRT1 deficiency in VSMCs (SIRT1(Δex4) in ApoE(-/-) mice).
Main Results:
- SIRT1 expression was decreased in human atherosclerotic plaques and senescent VSMCs.
- SIRT1 inhibition impaired DNA repair and promoted apoptosis in VSMCs.
- VSMCs lacking functional SIRT1 showed increased DNA damage and senescence upon LDL exposure.
- Mice with VSMC-specific SIRT1 deficiency exhibited exacerbated atherosclerosis, increased apoptosis, and medial degeneration.
Conclusions:
- SIRT1 is downregulated in human atherosclerosis and is crucial for VSMC survival and DNA damage response.
- VSMC SIRT1 plays a protective role against DNA damage, medial degeneration, and atherosclerosis.
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