Reduced body size and decreased intestinal tumor rates in HDAC2-mutant mice

被引:112
作者
Zimmermann, Stephan
Kiefer, Franz
Prudenziati, Michela
Spiller, Carmen
Hansen, Jens
Floss, Thomas
Wurst, Wolfgang
Minucci, Saverio
Goettlicher, Martin
机构
[1] GSF Natl Res Ctr Environm & Hlth, Inst Toxicol, D-85764 Neuherberg, Germany
[2] GSF Natl Res Ctr Environm & Hlth, Inst Dev Genet, D-85764 Neuherberg, Germany
[3] Univ Milan, Dept Biomol Sci & Biotechnol, I-20122 Milan, Italy
[4] European Inst Oncol, Dept Expt Oncol, Milan, Italy
[5] Tech Univ Munich, Inst Toxicol & Environm Hyg, D-8000 Munich, Germany
关键词
D O I
10.1158/0008-5472.CAN-07-0312
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Histone deacetylases (HDAC) reverse the acetylation of histone and nonhistone proteins and thereby modulate chromatin structure and function of nonhistone proteins. Many tumor cell lines and experimental tumors respond to HDAC inhibition. To assess the role of an individual HDAC isoenzyme in physiology and tumor development, HDAC2-mutant mice were generated from a gene trap embryonic stem cell clone. These mice express a catalytically inactive fusion protein of the NH2-terminal part of HDAC2 and beta-galactosidase, which fails to integrate into corepressor complexes with mSin3B. They are the first class I HDAC mutant mice that are viable although they are similar to 25% smaller than their littermates. Cell number and thickness of intestinal mucosa are reduced. Mutant embryonic fibroblasts fail to respond to insulin-like growth factor I (IGF) by the IGF-I-induced increase in cell number observed in wild-type cells. These data suggest a novel link between HDACs and IGF-I-dependent responses. Crossing of HDAC2-mutant with tumor-prone APC(min) mice revealed tumor rates that are lower in HDAC2-deficient mice by 10% to 100% depending on segment of the gut and sex of the mice. These mice provide evidence that the key functions of HDAC2, although not essential for survival of the organism, play a rate-limiting role for tumor development in vivo.
引用
收藏
页码:9047 / 9054
页数:8
相关论文
共 51 条
[1]   The Sir2 family of protein deacetylases [J].
Blander, G ;
Guarente, L .
ANNUAL REVIEW OF BIOCHEMISTRY, 2004, 73 :417-435
[2]   Valproic acid stimulates proliferation and self-renewal of hematopoietic stem cells [J].
Bug, G ;
Gül, H ;
Schwarz, K ;
Pfeifer, H ;
Kampfmann, M ;
Zheng, XM ;
Beissert, T ;
Boehrer, S ;
Hoelzer, D ;
Ottmann, OG ;
Ruthardt, M .
CANCER RESEARCH, 2005, 65 (07) :2537-2541
[3]   Regulatory cross-talk between lysine acetylation and ubiquitination: role in the control of protein stability [J].
Caron, C ;
Boyault, C ;
Khochbin, S .
BIOESSAYS, 2005, 27 (04) :408-415
[4]   Histone deacetylase 7 maintains vascular integrity by repressing matrix metalloproteinase 10 [J].
Chang, Shurong ;
Young, Bryan D. ;
Li, Shijie ;
Qi, Xiaoxia ;
Richardson, James A. ;
Olson, Eric N. .
CELL, 2006, 126 (02) :321-334
[5]   Histone deacetylases 5 and 9 govern responsiveness of the heart to a subset of stress signals and play redundant roles in heart development [J].
Chang, SR ;
McKinsey, TA ;
Zhang, CL ;
Richardson, JA ;
Hill, JA ;
Olson, EN .
MOLECULAR AND CELLULAR BIOLOGY, 2004, 24 (19) :8467-8476
[6]   Growth retardation and increased apoptosis in mice with homozygous disruption of the akt1 gene [J].
Chen, WS ;
Xu, PZ ;
Gottlob, K ;
Chen, ML ;
Sokol, K ;
Shiyanova, T ;
Roninson, I ;
Weng, W ;
Suzuki, R ;
Tobe, K ;
Kadowaki, T ;
Hay, N .
GENES & DEVELOPMENT, 2001, 15 (17) :2203-2208
[7]   Acetylation of the C terminus of Ku70 by CBP and PCAF controls Bax-mediated apoptosis [J].
Cohen, HY ;
Lavu, S ;
Bitterman, KJ ;
Hekking, B ;
Imahiyerobo, TA ;
Miller, C ;
Frye, R ;
Ploegh, H ;
Kessler, BM ;
Sinclair, DA .
MOLECULAR CELL, 2004, 13 (05) :627-638
[8]   The essential role of insulin-like growth factor-1 in the intestinal tropic effects of glucagon-like peptide-2 in mice [J].
Dube, Philip E. ;
Forse, Catherine L. ;
Bahrami, Jasmine ;
Brubaker, Patricia L. .
GASTROENTEROLOGY, 2006, 131 (02) :589-605
[9]   Structures of a histone deacetylase homologue bound to the TSA and SAHA inhibitors [J].
Finnin M.S. ;
Donigian J.R. ;
Cohen A. ;
Richon V.M. ;
Rifkind R.A. ;
Marks P.A. ;
Breslow R. ;
Pavletich N.P. .
Nature, 1999, 401 (6749) :188-193
[10]  
Glass CK, 2000, GENE DEV, V14, P121