Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Estrogen receptor gene disruption: molecular characterization and experimental and clinical phenotypes.

作者:Kenneth S. Korach, J F Couse, S W Curtis, Todd F. Washburn, Jonathan Lindzey, K S Kimbro, Edward M. Eddy, Silvia Migliaccio, Suzanne M. Snedeker, D B Lubahn, David W. Schomberg, E P Smith · 发表于:PubMed · 年份:1996 · 被引用次数:375 · 研究领域:Estrogen and related hormone effects

The estrogen receptor (ER) is thought to play a crucial role in the regulation of many life processes, including development, reproduction and normal physiology. Because there have been no known mutations of the estrogen receptor in normal tissue of humans and animals, its presence and tissue distribution is thought to be essential for survival. Using the techniques of homologous recombination, we have disrupted the ER gene and have produced a line of transgenic mice possessing the altered ER gene (ERKO). The mouse ER gene was disrupted by inserting a 1.8 kb PGK-Neomycin sequence into exon 2, approximately 280 bp downstream of the transcription start codon. The correct targeting of the disruption was demonstrated by Southern blot analysis and PCR. Western blot analysis of uterine preparations from ERKO females showed no detectable ER protein. Heterozygotes had one half the level of ER protein compared to wild-type animals. Estrogen insensitivity was confirmed using estrogen agonists, estradiol, hydroxy tamoxifen, diethylstilbestrol treatment for 3 days which resulted in a 3-4-fold increase in uterine wet weight and vaginal cornification in wild-type females, while ERKO mice were totally unresponsive. These data were further supported by the failure of estrogen or EGF treatment to induce DNA synthesis in uterine tissue of similarly treated mice. Lactoferrin, an estrogen-responsive gene in the uterus, was also assayed by Northern blot. Wild-type mice treated with a single estra...