Protein deacetylation by sirtuins: delineating a post-translational regulatory program responsive to nutrient and redox stressors

被引:55
作者
Bao, Jianjun [1 ]
Sack, Michael N. [1 ]
机构
[1] NHLBI, Translat Med Branch, NIH, Bethesda, MD 20892 USA
基金
美国国家卫生研究院;
关键词
Sirtuins; Lysine acetylation/deacetylation; Post-translational modifications; NAD(+); Biological functions; III HISTONE DEACETYLASE; NAD(+) SALVAGE PATHWAY; FATTY-ACID OXIDATION; SIR2; HOMOLOG; GENE-EXPRESSION; CALORIE RESTRICTION; NEGATIVE REGULATOR; MITOCHONDRIAL-FUNCTION; GLUCOSE-HOMEOSTASIS; DOWN-REGULATION;
D O I
10.1007/s00018-010-0402-y
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Lysine acetylation/deacetylation is increasingly being recognized as common post-translational modification that appears to be broadly operational throughout the cell. The functional roles of these modifications, outside of the nucleus, have not been extensively studied. Moreover, as acetyl-CoA donates the acetyl group for acetylation, nutrient availability and energetic status may be pivotal in this modification. Similarly, nutrient limitation is associated with the deacetylation reaction. This modification is orchestrated by a novel family of sirtuin deacetylases that function in a nutrient and redox dependent manner and targets non-histone protein deacetylation. In compartment-specific locations, candidate target proteins undergoing lysine-residue deacetylation are being identified. Through these investigations, the functional role of this post-translational modification is being delineated. We review the sirtuin family proteins, discuss their functional effects on target proteins, and postulate on potential biological programs and disease processes that may be modified by sirtuin-mediated deacetylation of target proteins.
引用
收藏
页码:3073 / 3087
页数:15
相关论文
共 176 条
[41]   Specific SIRT1 Activation Mimics Low Energy Levels and Protects against Diet-induced Metabolic Disorders by Enhancing Fat Oxidation [J].
Feige, Jerome N. ;
Lagouge, Marie ;
Canto, Carles ;
Strehle, Axelle ;
Houten, Sander M. ;
Milne, Jill C. ;
Lambert, Philip D. ;
Mataki, Chikage ;
Elliott, Peter J. ;
Auwerx, Johan .
CELL METABOLISM, 2008, 8 (05) :347-358
[42]   The SIRT1 Deacetylase Suppresses Intestinal Tumorigenesis and Colon Cancer Growth [J].
Firestein, Ron ;
Blander, Gil ;
Michan, Shaday ;
Oberdoerffer, Philipp ;
Ogino, Shuji ;
Campbell, Jennifer ;
Bhimavarapu, Anupama ;
Luikenhuis, Sandra ;
de Cabo, Rafael ;
Fuchs, Charles ;
Hahn, William C. ;
Guarente, Leonard P. ;
Sinclair, David A. .
PLOS ONE, 2008, 3 (04)
[43]   Mammalian Sir2 homolog SIRT7 is an activator of RNA polymerase I transcription [J].
Ford, E ;
Voit, R ;
Liszt, G ;
Magin, C ;
GrumMt, I ;
Guarente, L .
GENES & DEVELOPMENT, 2006, 20 (09) :1075-1080
[44]   Phylogenetic classification of prokaryotic and eukaryotic Sir2-like proteins [J].
Frye, RA .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2000, 273 (02) :793-798
[45]   Abnormal angiogenesis in Foxo1 (Fkhr)-deficient mice [J].
Furuyama, T ;
Kitayama, K ;
Shimoda, Y ;
Ogawa, M ;
Sone, K ;
Yoshida-Araki, K ;
Hisatsune, H ;
Nishikawa, S ;
Nakayama, K ;
Nakayama, K ;
Ikeda, K ;
Motoyama, N ;
Mori, N .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (33) :34741-34749
[46]   Metabolic control of muscle mitochondrial function and fatty acid oxidation through SIRT1/PGC-1α [J].
Gerhart-Hines, Zachary ;
Rodgers, Joseph T. ;
Bare, Olivia ;
Lerin, Carles ;
Kim, Seung-Hee ;
Mostoslavsky, Raul ;
Alt, Frederick W. ;
Wu, Zhidan ;
Puigserver, Pere .
EMBO JOURNAL, 2007, 26 (07) :1913-1923
[47]   The interaction between FOXO and SIRT1: tipping the balance towards survival [J].
Giannakou, ME ;
Partridge, L .
TRENDS IN CELL BIOLOGY, 2004, 14 (08) :408-412
[48]   Involvement of SIRT7 in resumption of rDNA transcription at the exit from mitosis [J].
Grob, Alice ;
Roussel, Pascal ;
Wright, Jane E. ;
McStay, Brian ;
Hernandez-Verdun, Daniele ;
Sirri, Valentina .
JOURNAL OF CELL SCIENCE, 2009, 122 (04) :489-498
[49]   Aging: The sins of the parents [J].
Haber, JE .
CURRENT BIOLOGY, 2003, 13 (21) :R843-R845
[50]   SIRT4 inhibits glutamate dehydrogehase and opposes the effects of calorie restriction in pancreatic β cells [J].
Haigis, Marcia C. ;
Mostoslavsky, Raul ;
Haigis, Kevin M. ;
Fahie, Kamau ;
Christodoulou, Danos C. ;
Murphy, Andrew J. ;
Valenzuela, David M. ;
Yancopoulos, George D. ;
Karow, Margaret ;
Blander, Gil ;
Wolberger, Cynthia ;
Prolla, Tomas A. ;
Weindruch, Richard ;
Alt, Frederick W. ;
Guarente, Leonard .
CELL, 2006, 126 (05) :941-954