Comparison of estrogen receptor α and β subtypes based on comparative molecular field analysis (CoMFA)

被引:24
作者
Xing, L
Welsh, WJ [1 ]
Tong, W
Perkins, R
Sheehan, DM
机构
[1] Univ Missouri, Dept Chem, St Louis, MO 63121 USA
[2] Univ Missouri, Ctr Mol Elect, St Louis, MO 63121 USA
[3] ROW Sci, Jefferson, AR 72079 USA
[4] Natl Ctr Toxicol Res, Div Reprod & Dev Toxicol, Jefferson, AR 72079 USA
关键词
CoMFA; 3D-QSAR; endocrine disrupting compounds; estrogen receptor alpha (ER-alpha); estrogen receptor beta (ER-beta);
D O I
10.1080/10629369908039177
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A substantial body of evidence indicates that both humans and wildlife suffer adverse health effects from exposure to environmental chemicals that are capable of interacting with the endocrine system. The recent cloning of the estrogen receptor beta subtype (ER-beta) suggests that the selective effects of estrogenic compounds may arise in part by the control of different subsets of estrogen-responsive promoters by the two ER subtypes, ER-alpha and ER-beta. In order to identify the structural prerequisites for ligand-ER binding and to discriminate ER-alpha and ER-beta in terms of their ligand-binding specificities, Comparative Molecular Field Analysis (CoMFA) was employed to construct a three-dimensional Quantitative Structure-Activity Relationship (3D-QSAR) model on a data set of 31 structurally-diverse compounds for which competitive binding affinities have been measured against both ER-alpha and ER-beta. Structural alignment of the molecules in CoMFA was achieved by maximizing overlap of their steric and electrostatic fields using the Steric and Electrostalic ALignment (SEAL) algorithm. The final CoMFA models, generated by correlating the calculated 3D steric and electrostatic fields with the experimentally observed binding affinities using partial least-squares (PLS) regression, exhibited excellent self-consistency (r(2) > 0.99) as well as high internal predictive ability (q(2) > 0.65) based on cross validation. CoMFA-predicted values of RBA for a test set of compounds outside of the training set were consistent with experimental observations. These CoMFA models can serve as guides for the rational design of ER ligands that possess preferential binding affinities for either ER-alpha or ER-beta. These models can also prove useful in risk assessment programs to identify real or suspected EDCs.
引用
收藏
页码:215 / +
页数:25
相关论文
共 44 条
[11]   USE OF PHYSICOCHEMICAL PARAMETERS IN DISTANCE GEOMETRY AND RELATED 3-DIMENSIONAL QUANTITATIVE STRUCTURE ACTIVITY RELATIONSHIPS - A DEMONSTRATION USING ESCHERICHIA-COLI DIHYDROFOLATE-REDUCTASE INHIBITORS [J].
GHOSE, AK ;
CRIPPEN, GM .
JOURNAL OF MEDICINAL CHEMISTRY, 1985, 28 (03) :333-346
[13]   TRANSCRIPTION ACTIVATION BY ESTROGEN AND PROGESTERONE RECEPTORS [J].
GRONEMEYER, H .
ANNUAL REVIEW OF GENETICS, 1991, 25 :89-123
[14]  
Hansch C., 1979, Substituent constants for correlation analysis in chemistry and biology
[15]  
*IND U BLOOM DEP C, SEAL QUANT CHEM PROG
[16]   A new actor in the estrogen receptor drama - Enter ER-beta [J].
Katzenellenbogen, BS ;
Korach, KS .
ENDOCRINOLOGY, 1997, 138 (03) :861-862
[17]   Estrogen receptors: Bioactivities and interactions with cell signaling pathways [J].
Katzenellenbogen, BS .
BIOLOGY OF REPRODUCTION, 1996, 54 (02) :287-293
[18]  
Kavlock RJ, 1996, ENVIRON HEALTH PERSP, V104, P715, DOI 10.1289/ehp.96104s4715
[19]   Cloning of a novel estrogen receptor expressed in rat prostate and ovary [J].
Kuiper, GGJM ;
Enmark, E ;
PeltoHuikko, M ;
Nilsson, S ;
Gustafsson, JA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (12) :5925-5930
[20]   Comparison of the ligand binding specificity and transcript tissue distribution of estrogen receptors alpha and beta [J].
Kuiper, GGJM ;
Carlsson, B ;
Grandien, K ;
Enmark, E ;
Haggblad, J ;
Nilsson, S ;
Gustafsson, JA .
ENDOCRINOLOGY, 1997, 138 (03) :863-870