Toxicogenomics: Overview and potential applications for the study of non-covalent DNA interacting chemicals

被引:48
作者
Li, Heng-Hong
Aubrecht, Jiri
Fornace, Albert J., Jr. [1 ]
机构
[1] Georgetown Univ, Dept Biochem & Mol & Cellular Biol, Washington, DC 20007 USA
[2] Georgetown Univ, Lombardi Comprehens Canc Ctr, Washington, DC 20007 USA
[3] Pfizer Global Res & Dev, Groton, CT 06340 USA
关键词
toxicogenomics; expression profiling; intercalators; genetic toxicology; gene expression;
D O I
10.1016/j.mrfmmm.2007.03.013
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Non-covalent DNA interacting agents, DNA-groove binding chemicals and DNA intercalators, are generally considered less cytotoxic than agents producing covalent DNA adducts and other DNA damage. Although the impact of non-covalent compound-DNA interactions on convoluted molecular and biochemical pathways is not well characterized, the most prominent effects include DNA conformational and related structural perturbations, interference with normal DNA protein interactions, such as topoisomerases, as well as effects on mitochondrial DNA and function. The cellular responses to such perturbations would be expected to include changes in transcription of a variety of genes. The emerging field of toxicogenomics seeks to exploit gene responses to define expression profiling signatures for various types of drugs and toxicants, and to provide mechanistic insight into their cellular effects. There are a variety of examples whereby different classes of genotoxicants and non-genotoxic agents can be distinguished by gene expression profiling using functional genomics approaches, which survey global transcriptional responses. In this review, we will discuss the promises and precautions in the use of functional genomics approaches to characterize stress agents including non-covalent DNA interacting agents. (C) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:98 / 108
页数:11
相关论文
共 87 条
[21]   The GreenScreen® genotoxicity assay:: a screening validation programme [J].
Cahill, PA ;
Knight, AW ;
Billinton, N ;
Barker, MG ;
Walsh, L ;
Keenan, PO ;
Williams, CV ;
Tweats, DJ ;
Walmsley, RM .
MUTAGENESIS, 2004, 19 (02) :105-119
[22]   Low-dose irradiation alters the transcript profiles of human lymphoblastoid cells including genes associated with cytogenetic radioadaptive response [J].
Coleman, MA ;
Yin, E ;
Peterson, LE ;
Nelson, D ;
Sorensen, K ;
Tucker, JD ;
Wyrobek, AJ .
RADIATION RESEARCH, 2005, 164 (04) :369-382
[23]   FREE-RADICAL MECHANISMS INVOLVED IN THE FORMATION OF SEQUENCE-DEPENDENT BISTRANDED DNA LESIONS BY THE ANTITUMOR ANTIBIOTICS BLEOMYCIN, NEOCARZINOSTATIN, AND CALICHEAMICIN [J].
DEDON, PC ;
GOLDBERG, IH .
CHEMICAL RESEARCH IN TOXICOLOGY, 1992, 5 (03) :311-332
[24]   Differentiation of DNA reactive and non-reactive genotoxic mechanisms using gene expression profile analysis [J].
Dickinson, DA ;
Warnes, GR ;
Quievryn, G ;
Messer, J ;
Zhitkovich, A ;
Rubitski, E ;
Aubrecht, J .
MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 2004, 549 (1-2) :29-41
[25]   p53 induction as a genotoxic test for twenty-five chemicals undergoing in vivo carcinogenicity testing [J].
Duerksen-Hughes, PJ ;
Yang, J ;
Ozcan, O .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1999, 107 (10) :805-812
[26]  
Fornace AJ, 1999, GENE EXPRESSION, V7, P387
[27]   DNA DAMAGE-INDUCIBLE TRANSCRIPTS IN MAMMALIAN-CELLS [J].
FORNACE, AJ ;
ALAMO, I ;
HOLLANDER, MC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (23) :8800-8804
[28]   GENOTOXIC-STRESS-RESPONSE GENES AND GROWTH-ARREST GENES - GADD, MYD, AND OTHER GENES INDUCED BY TREATMENTS ELICITING GROWTH ARREST [J].
FORNACE, AJ ;
JACKMAN, J ;
HOLLANDER, MC ;
HOFFMANLIEBERMANN, B ;
LIEBERMANN, DA .
ANNALS OF THE NEW YORK ACADEMY OF SCIENCES-SERIES, 1992, 663 :139-153
[29]   Inhibition of DNA binding by human estrogen-related receptor 2 and estrogen receptor α with minor groove binding polyamides [J].
Gearhart, MD ;
Dickinson, L ;
Ehley, J ;
Melander, C ;
Dervan, PB ;
Wright, PE ;
Gottesfeld, JM .
BIOCHEMISTRY, 2005, 44 (11) :4196-4203
[30]   Prediction of compound signature using high density gene expression profiling [J].
Hamadeh, HK ;
Bushel, PR ;
Jayadev, S ;
DiSorbo, O ;
Bennett, L ;
Li, LP ;
Tennant, R ;
Stoll, R ;
Barrett, JC ;
Paules, RS ;
Blanchard, K ;
Afshari, CA .
TOXICOLOGICAL SCIENCES, 2002, 67 (02) :232-240