A yeast estrogen screen for examining the relative exposure of cells to natural and xenoestrogens

被引:207
作者
Arnold, SF
Robinson, MK
Notides, AC
Guillette, LJ
McLachlan, JA
机构
[1] TULANE UNIV,SCH PUBL HLTH & TROP MED,DEPT ENVIRONM HLTH SCI,NEW ORLEANS,LA 70112
[2] UNIV ROCHESTER,MED CTR,DEPT BIOCHEM,ROCHESTER,NY 14642
[3] UNIV FLORIDA,DEPT ZOOL,GAINESVILLE,FL 32611
[4] TULANE UNIV,SCH MED,DEPT PHARMACOL,NEW ORLEANS,LA 70112
关键词
albumin; alligator; estrogens; sex hormone binding globulin; xenoestrogens; yeast estrogen screen;
D O I
10.2307/3432996
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Xenoestrogens, such as o,p'-DDT and octyl phenol (OP), have been associated with reproductive abnormalities in various wildlife species. Xenoestrogens mimic the natural estrogen 17 beta-estradiol and compete for binding to the estrogen receptor. Even though the affinity of o,p'-DDT and OP for the estrogen receptor is approximately 1000-fold lower than 17 beta-estradiol, the actions of xenoestrogens could be enhanced, if their bioavailability in serum were greater than 17 beta-estradiol. To test this hypothesis, the yeast estrogen screen (YES) was created by expressing human estrogen (hER) and two estrogen response elements (ERE) linked to the lacZ gene. The beta-galactosidase activity of the YES system was significantly increased after treatment with 17 beta-estradiol or the xenostrogens diethylstilbestrol (DES), o,p'-DDT, and OP but not with vehicle antiestrogen ICI 164,384, dexamethasone, or testosterone. To determine whether serum proteins affected the bioavailability of natural estrogens compared to xenoestrogens, albumin, sex hormone binding globulin (SHBG), or charcoal-stripped serum were added to the YES system and beta-galactosidase activity assayed. Albumin and SHBG decreased beta-galactosidase activity in the presence of estradiol to a greater extent than DES, o,p'-DDT, and OP. Human and alligator charcoal-stripped were also effective at selectively reducing beta-galactosidase in the presence of xenoestrogens, indicating that serum may serve as a biomarker for sensitivity to xenoestrogens may exert greater estrogenicity than originally predicted. The estrogenic potency of a compound involves its binding affinity, bioavailability in serum, and persistence in the environment. Our data demonstrate the utility of the YES system for identifying and characterizing environmental estrogens.
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页码:544 / 548
页数:5
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