QSAR models of the in vitro estrogen activity of bisphenol A analogs

被引:33
作者
Coleman, KP
Toscano, WA
Wiese, TE
机构
[1] Tulane Univ, Sch Publ Hlth & Trop Med, Dept Environm Hlth Sci, New Orleans, LA 70112 USA
[2] Univ Minnesota, Sch Publ Hlth, Minneapolis, MN USA
来源
QSAR & COMBINATORIAL SCIENCE | 2003年 / 22卷 / 01期
关键词
bisphenol A; endocrine disruption; estrogen receptor binding;
D O I
10.1002/qsar.200390008
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Bisphenol A is a monomer constituent of epoxy and polycarbonate resins used in consumer products., Many studies have shown that bisphenol A is a weak estrogen receptor agonist with endocrine disrupting potential in exposed organisms. Presented here is a series of quantitative structure-activity relationship models to describe the in vitro hormone activity (estrogen receptor binding, reporter gene induction, and cell proliferation) of bisphenol A and 24 of its analogs. The hormone activity ranged over four orders of magnitude, with bisphenol A displaying intermediate activity. Comparative molecular field analysis, comparative molecular similarity indices, and hologram quantitative structure activity models were generated using SYBYL 6.8. Bisphenols with optimal estrogen activity contained two unencumbered phenolic groups in the para orientation, and multiple alkyl substituents extending from the carbon linking phenolic rings. Bisphenols with methyl group hydrogens replaced by halogens also produced strong estrogenic analogs. These studies suggest that it may be possible to use such structure activities to develop bisphenols that are useful monomers with reduced hormone activity.
引用
收藏
页码:78 / 88
页数:11
相关论文
共 41 条
[1]   The estradiol pharmacophore: Ligand structure-estrogen receptor binding affinity relationships and a model for the receptor binding site [J].
Anstead, GM ;
Carlson, KE ;
Katzenellenbogen, JA .
STEROIDS, 1997, 62 (03) :268-303
[2]   Re-evaluation of the first synthetic estrogen, 1-keto-1,2,3,4-tetrahydrophenanthrene, and bisphenol A, using both the ovariectomised rat model used in 1933 and additional assays [J].
Ashby, J ;
Odum, J ;
Paton, D ;
Lefevre, PA ;
Beresford, N ;
Sumpter, JP .
TOXICOLOGY LETTERS, 2000, 115 (03) :231-238
[3]   The estrogen receptor relative binding affinities of 188 natural and xenochemicals: Structural diversity of ligands [J].
Blair, RM ;
Fang, H ;
Branham, WS ;
Hass, BS ;
Dial, SL ;
Moland, CL ;
Tong, WD ;
Shi, LM ;
Perkins, R ;
Sheehan, DM .
TOXICOLOGICAL SCIENCES, 2000, 54 (01) :138-153
[4]   Rapid screening of environmental chemicals for estrogen receptor binding capacity [J].
Bolger, R ;
Wiese, TE ;
Ervin, K ;
Nestich, S ;
Checovich, W .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1998, 106 (09) :551-557
[5]   Molecular basis of agonism and antagonism in the oestrogen receptor [J].
Brzozowski, AM ;
Pike, ACW ;
Dauter, Z ;
Hubbard, RE ;
Bonn, T ;
Engstrom, O ;
Ohman, L ;
Greene, GL ;
Gustafsson, JA ;
Carlquist, M .
NATURE, 1997, 389 (6652) :753-758
[6]  
*COMM HORM ACT AG, 1999, HORM ACT AG ENV, P10
[7]   CROSS-VALIDATION, BOOTSTRAPPING, AND PARTIAL LEAST-SQUARES COMPARED WITH MULTIPLE-REGRESSION IN CONVENTIONAL QSAR STUDIES [J].
CRAMER, RD ;
BUNCE, JD ;
PATTERSON, DE ;
FRANK, IE .
QUANTITATIVE STRUCTURE-ACTIVITY RELATIONSHIPS, 1988, 7 (01) :18-25
[8]   COMPARATIVE MOLECULAR-FIELD ANALYSIS (COMFA) .1. EFFECT OF SHAPE ON BINDING OF STEROIDS TO CARRIER PROTEINS [J].
CRAMER, RD ;
PATTERSON, DE ;
BUNCE, JD .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1988, 110 (18) :5959-5967
[9]   THE STEROID AND THYROID-HORMONE RECEPTOR SUPERFAMILY [J].
EVANS, RM .
SCIENCE, 1988, 240 (4854) :889-895
[10]   Structure-activity relationships for a large diverse set of natural, synthetic, and environmental estrogens [J].
Fang, H ;
Tong, WD ;
Shi, LM ;
Blair, R ;
Perkins, R ;
Branham, W ;
Hass, BS ;
Xie, Q ;
Dial, SL ;
Moland, CL ;
Sheehan, DM .
CHEMICAL RESEARCH IN TOXICOLOGY, 2001, 14 (03) :280-294