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雌激素对雌激素非依赖性和依赖性MCF-7人乳腺癌细胞亚系中基因表达的差异调节。

Differential regulation of gene expression by estrogen in estrogen growth-independent and -dependent MCF-7 human breast cancer cell sublines.

作者信息

Cho H S, NG P A, Katzenellenbogen B S

机构信息

Department of Physiology and Biophysics, University of Illinois College of Medicine, Urbana 61801.

出版信息

Mol Endocrinol. 1991 Sep;5(9):1323-30. doi: 10.1210/mend-5-9-1323.

Abstract

We have examined the ability of estradiol (E2) to regulate the expression of three mRNAs [for pS2, progesterone receptor (PR), and estrogen receptor (ER)], known to be under E2 regulation in the parental E2 growth-responsive MCF-7 cells, in an E2 growth-independent MCF-7 K3), previously isolated from the parental estrogen-dependent MCF-7 K1 human breast cancer cells after long term growth in vitro in the absence of estrogen, acquired estrogen-independent growth in vitro as well as the ability to form tumors in nude mice in vivo without estrogen. We find that the content of pS2 mRNA and the transcription rate of the pS2 gene, while being markedly increased by E2 in MCF-7 K1 cells, are no longer stimulated by E2 in this subline, although protein kinase activators tremendously increase (greater than 10-fold) pS2 mRNA in both K1 and K3 cells. In fact, basal pS2 mRNA levels are elevated 2.8 +/- 0.4-fold in MCF-7 K3 cells, and E2 evokes a concentration-dependent suppression of the pS2 mRNA level. In contrast, PR mRNA in the K3 subline, as in the parental K1 cells, is still up-regulated by E2, and ER mRAN content and the ER mRNA transcription rate are still down-regulated by E2 and show normal E2 dose-response relationships, implying that the ER in this subline is functional. These results demonstrate that the progression to estrogen-independent growth in K3 cells is accompanied by a change in the regulation of some estrogen-induced genes by estrogen. While PR and ER retain normal patterns of regulation by E2, the pS2 gene in the estrogen growth-independent K3 subline is differentially affected and is no longer stimulated by E2. Our data suggest that this altered regulation of the pS2 gene is probably not caused by a defect of the ER or ER regulation in this subline.

摘要

我们研究了雌二醇(E2)调节三种mRNA [pS2、孕激素受体(PR)和雌激素受体(ER)] 表达的能力。已知在亲代E2生长反应性MCF-7细胞中,这三种mRNA受E2调控。MCF-7 K3细胞先前从亲代雌激素依赖性MCF-7 K1人乳腺癌细胞中分离得到,经过长期无雌激素体外培养后,获得了体外雌激素非依赖性生长能力以及在无雌激素情况下于裸鼠体内形成肿瘤的能力。我们发现,pS2 mRNA的含量以及pS2基因的转录率,在MCF-7 K1细胞中虽会被E2显著提高,但在该亚系中不再受E2刺激,尽管蛋白激酶激活剂能使K1和K3细胞中的pS2 mRNA大幅增加(超过10倍)。事实上,MCF-7 K3细胞中基础pS2 mRNA水平升高了2.8±0.4倍,E2会引起pS2 mRNA水平的浓度依赖性抑制。相比之下,K3亚系中的PR mRNA,如同亲代K1细胞一样,仍受E2上调,ER mRNA含量和ER mRNA转录率仍受E2下调,并呈现正常的E2剂量反应关系,这意味着该亚系中的ER具有功能。这些结果表明,K3细胞向雌激素非依赖性生长的转变伴随着雌激素对一些雌激素诱导基因调控的变化。虽然PR和ER保留了受E2调控的正常模式,但雌激素生长非依赖性K3亚系中的pS2基因受到不同影响,不再受E2刺激。我们的数据表明,pS2基因这种调控的改变可能并非由该亚系中ER或ER调控缺陷所致。

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