A High-Fat Diet and NAD+ Activate Sirt1 to Rescue Premature Aging in Cockayne Syndrome

被引:280
作者
Scheibye-Knudsen, Morten [1 ]
Mitchell, Sarah J. [2 ,5 ]
Fang, Evandro F. [1 ]
Iyama, Teruaki [1 ]
Ward, Theresa [2 ]
Wang, James [1 ]
Dunn, Christopher A. [1 ]
Singh, Nagendra [3 ]
Veith, Sebastian [6 ]
Hasan-Olive, Md Mahdi [4 ]
Mangerich, Aswin [6 ]
Wilson, Mark A. [4 ]
Mattson, Mark P. [4 ]
Bergersen, Linda H. [7 ,11 ]
Cogger, Victoria C. [5 ,8 ,9 ,10 ]
Warren, Alessandra [8 ,9 ,10 ]
Le Couteur, David G. [5 ,8 ,9 ,10 ]
Moaddel, Ruin [3 ]
Wilson, David M., III [1 ]
Croteau, Deborah L. [1 ]
de Cabo, Rafael [2 ]
Bohr, Vilhelm A. [1 ,11 ]
机构
[1] NIA, Lab Mol Gerontol, NIH, Baltimore, MD 21224 USA
[2] NIA, Translat Gerontol Branch, NIH, Baltimore, MD 21224 USA
[3] NIA, Lab Clin Invest, NIH, Baltimore, MD 21224 USA
[4] NIA, Lab Neurosci, NIH, Baltimore, MD 21224 USA
[5] Univ Sydney, Sydney Med Sch, Sydney, NSW 2006, Australia
[6] Univ Konstanz, Dept Biol, Mol Toxicol Grp, D-78457 Constance, Germany
[7] Univ Oslo, Inst Basic Med Sci, Dept Anat, Brain & Muscle Energy Grp,Synapt Neurochem Lab, N-0317 Oslo, Norway
[8] Concord Hosp, Ctr Educ & Res Ageing, Sydney, NSW 2139, Australia
[9] Concord Hosp, ANZAC Res Inst, Sydney, NSW 2139, Australia
[10] Univ Sydney, Sydney, NSW 2139, Australia
[11] Univ Copenhagen, ICMM, Danish Ctr Hlth Aging, Copenhagen, Denmark
关键词
GROUP-B PROTEIN; KETOGENIC DIET; POLY(ADP-RIBOSE) POLYMERASE-1; DNA LESIONS; MITOCHONDRIAL; REPAIR; TRANSCRIPTION; PATHWAY; COMPLEX;
D O I
10.1016/j.cmet.2014.10.005
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Cockayne syndrome (CS) is an accelerated aging disorder characterized by progressive neurodegeneration caused by mutations in genes encoding the DNA repair proteins CS group A or B (CSA or CSB). Since dietary interventions can alter neurodegenerative processes, Csb(m/m) mice were given a high-fat, caloric-restricted, or resveratrol-supplemented diet. High-fat feeding rescued the metabolic, transcriptomic, and behavioral phenotypes of Csb(m/m) mice. Furthermore, premature aging in CS mice, nematodes, and human cells results from aberrant PARP activation due to deficient DNA repair leading to decreased SIRT1 activity and mitochondrial dysfunction. Notably, beta-hydroxybutyrate levels are increased by the high-fat diet, and beta-hydroxybutyrate, PARP inhibition, or NAD(+) supplementation can activate SIRT1 and rescue CS-associated phenotypes. Mechanistically, CSB can displace activated PARP1 from damaged DNA to limit its activity. This study connects two emerging longevity metabolites, beta-hydroxybutyrate and NAD(+), through the deacetylase SIRT1 and suggests possible interventions for CS.
引用
收藏
页码:840 / 855
页数:16
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