Sokrates Stein, Nicola Schäfer, Alexander Breitenstein, Christian Besler, Stephan Winnik, Christine Lohmann, Kathrin Heinrich, Chad E Brokopp, Christoph Handschin, Ulf Landmesser, Felix C Tanner, Thomas F Lüscher, Christian M Matter
Index: Aging (Albany. NY.) 2 , 353-60, (2010)
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Excessive production of reactive oxygen species (ROS) contributes to progression of atherosclerosis, at least in part by causing endothelial dysfunction and inflammatory activation. The class III histone deacetylase SIRT1 has been implicated in extension of lifespan. In the vasculature,SIRT1 gain-of-function using SIRT1 overexpression or activation has been shown to improve endothelial function in mice and rats via stimulation of endothelial nitric oxide (NO) synthase (eNOS). However, the effects of SIRT1 loss-of-function on the endothelium in atherosclerosis remain to be characterized. Thus, we have investigated the endothelial effects of decreased endogenous SIRT1 in hypercholesterolemic ApoE-/- mice. We observed no difference in endothelial relaxation and eNOS (Ser1177) phosphorylation between 20-week old male atherosclerotic ApoE-/- SIRT1+/- and ApoE-/- SIRT1+/+ mice. However, SIRT1 prevented endothelial superoxide production, inhibited NF-kappaB signaling, and diminished expression of adhesion molecules. Treatment of young hypercholesterolemic ApoE-/- SIRT1+/- mice with lipopolysaccharide to boost NF-kappaB signaling led to a more pronounced endothelial expression of ICAM-1 and VCAM-1 as compared to ApoE-/- SIRT1+/+ mice. In conclusion, endogenous SIRT1 diminishes endothelial activation in ApoE-/- mice, but does not affect endothelium-dependent vasodilatation.
Structure | Name/CAS No. | Molecular Formula | Articles |
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Splitomicin
CAS:5690-03-9 |
C13H10O2 |
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2010-09-01 [Eur. Heart J. 31 , 2301-9, (2010)] |
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2009-01-01 [PLoS ONE 4(6) , e6093, (2009)] |
Sirt1 inhibition promotes in vivo arterial thrombosis and ti...
2011-02-01 [Cardiovasc. Res. 89 , 464-72, (2011)] |
The Sir2 family of protein deacetylases.
2004-01-01 [Annu. Rev. Biochem. 73 , 417-35, (2004)] |
Deacetylation of the DNA-binding domain regulates p53-mediat...
2011-02-11 [J. Biol. Chem. 286 , 4264-70, (2011)] |
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