Mechanisms of Histone Deacetylase Inhibitor-Regulated Gene Expression in Cancer Cells

被引:54
作者
Chueh, Anderly C. [1 ]
Tse, Janson W. T. [1 ]
Toegel, Lars [1 ]
Mariadason, John M. [1 ]
机构
[1] Austin Hlth, Olivia Newton John Canc & Wellness Ctr, Ludwig Inst Canc Res, Heidelberg, Vic 3084, Australia
基金
澳大利亚研究理事会;
关键词
SUBEROYLANILIDE HYDROXAMIC ACID; ACTIVATING TRANSCRIPTION FACTOR-3; COLON-CARCINOMA CELLS; PHASE-II TRIAL; SODIUM-BUTYRATE; HDAC INHIBITORS; TRICHOSTATIN-A; DNA-BINDING; REVERSIBLE ACETYLATION; CHROMATIN-STRUCTURE;
D O I
10.1089/ars.2014.5863
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
Significance: Class I and II histone deacetylase inhibitors (HDACis) are approved for the treatment of cutaneous T-cell lymphoma and are undergoing clinical trials as single agents, and in combination, for other hematological and solid tumors. Understanding their mechanisms of action is essential for their more effective clinical use, and broadening their clinical potential. Recent Advances: HDACi induce extensive transcriptional changes in tumor cells by activating and repressing similar numbers of genes. These transcriptional changes mediate, at least in part, HDACi-mediated growth inhibition, apoptosis, and differentiation. Here, we highlight two fundamental mechanisms by which HDACi regulate gene expressionhistone and transcription factor acetylation. We also review the transcriptional responses invoked by HDACi, and compare these effects within and across tumor types. Critical Issues: The mechanistic basis for how HDACi activate, and in particular repress gene expression, is not well understood. In addition, whether subsets of genes are reproducibly regulated by these agents both within and across tumor types has not been systematically addressed. A detailed understanding of the transcriptional changes elicited by HDACi in various tumor types, and the mechanistic basis for these effects, may provide insights into the specificity of these drugs for transformed cells and specific tumor types. Future Directions: Understanding the mechanisms by which HDACi regulate gene expression and an appreciation of their transcriptional targets could facilitate the ongoing clinical development of these emerging therapeutics. In particular, this knowledge could inform the design of rational drug combinations involving HDACi, and facilitate the identification of mechanism-based biomarkers of response. Antioxid. Redox Signal. 23, 66-84.
引用
收藏
页码:66 / 84
页数:19
相关论文
共 190 条
[1]   Recruitment of TIF1γ to Chromatin via Its PHD Finger-Bromodomain Activates Its Ubiquitin Ligase and Transcriptional Repressor Activities [J].
Agricola, Eleonora ;
Randall, Rebecca A. ;
Gaarenstroom, Tessa ;
Dupont, Sirio ;
Hill, Caroline S. .
MOLECULAR CELL, 2011, 43 (01) :85-96
[2]  
Allfrey V.G., 1977, CHROMATIN CHROMOSOME, P167
[3]   ACETYLATION + METHYLATION OF HISTONES + THEIR POSSIBLE ROLE IN REGULATION OF RNA SYNTHESIS [J].
ALLFREY, VG ;
FAULKNER, R ;
MIRSKY, AE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1964, 51 (05) :786-+
[4]   Involvement of Sp1 and Sp3 in differential regulation of human NHE3 promoter activity by sodium butyrate and IFN-γ/TNF-α [J].
Amin, Md. Ruhul ;
Dudeja, Pradeep K. ;
Ramaswamy, Krishnamurthy ;
Malakooti, Jaleh .
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 2007, 293 (01) :G374-G382
[5]   Acetylated Sp3 is a transcriptional activator [J].
Ammanamanchi, S ;
Freeman, JW ;
Brattain, MG .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (37) :35775-35780
[6]   Mechanisms of Mediator complex action in transcriptional activation [J].
Ansari, Suraiya A. ;
Morse, Randall H. .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2013, 70 (15) :2743-2756
[7]   p21WAF1 is required for butyrate-mediated growth inhibition of human colon cancer cells [J].
Archer, SY ;
Meng, SF ;
Shei, A ;
Hodin, RA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (12) :6791-6796
[8]   Selective growth inhibition of tumor cells by a novel histone deacetylase inhibitor, NVP-LAQ824 [J].
Atadja, P ;
Gao, L ;
Kwon, P ;
Trogani, N ;
Walker, H ;
Hsu, M ;
Yeleswarapu, L ;
Chandramouli, N ;
Perez, L ;
Versace, R ;
Wu, A ;
Sambucetti, L ;
Lassota, P ;
Cohen, D ;
Bair, K ;
Wood, A ;
Remiszewski, S .
CANCER RESEARCH, 2004, 64 (02) :689-695
[9]   Transcription factor ZBP-89 cooperates with histone acetyltransferase p300 during butyrate activation of p21waf1 transcription in human cells [J].
Bai, LC ;
Merchant, JL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (39) :30725-30733
[10]   Acetylation of p53 activates transcription through recruitment of coactivators/histone acetyltransferases [J].
Barlev, NA ;
Liu, L ;
Chehab, NH ;
Mansfield, K ;
Harris, KG ;
Halazonetis, TD ;
Berger, SL .
MOLECULAR CELL, 2001, 8 (06) :1243-1254