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雌激素受体基因编码序列在自身配体依赖性下调中的作用。

Involvement of the coding sequence for the estrogen receptor gene in autologous ligand-dependent down-regulation.

作者信息

Kaneko K J, Furlow J D, Gorski J

机构信息

Department of Biochemistry, University of Wisconsin, Madison 53706.

出版信息

Mol Endocrinol. 1993 Jul;7(7):879-88. doi: 10.1210/mend.7.7.8413312.

Abstract

The estrogen receptor (ER) appears to be down-regulated by its own ligand in some estrogen (E2)-responsive tissues as well as in cell lines such as MCF-7 and GH3. Surprisingly, we observed ER down-regulation in a newly constructed E2-responsive cell line (Rat1 + ER), in which expression of the coding region of the ER cDNA was driven by the Moloney murine leukemia virus long terminal repeat. We present evidence that the coding region of the ER cDNA, but not the Moloney murine leukemia virus long terminal repeat, possesses a sequence(s) necessary for ER down-regulation. The observed down-regulation occurs at ligand-binding and protein, as well as mRNA, levels. Marked decreases in both protein and mRNA levels were observed as early as 3 h after E2 treatment. Furthermore, maximal down-regulation occurred by 18-24 h with ligand-binding, and mRNA levels reached approximately 20% that of controls. ER down-regulation in Rat1 + ER cells is only partially inhibited by the presence of cycloheximide and therefore suggests a direct participation of the ER in this process. E2 does not appear to influence the stability of the ER transcript, which implies that negative regulation is occurring at the transcriptional level. Finally, since we can demonstrate ER binding to a portion of the cDNA sequence, we propose a mechanism whereby ER binding to its putative negative element leads to transcriptional repression of the upstream promoter.

摘要

在一些雌激素(E2)反应性组织以及诸如MCF-7和GH3等细胞系中,雌激素受体(ER)似乎会被其自身配体下调。令人惊讶的是,我们在新构建的E2反应性细胞系(Rat1 + ER)中观察到了ER下调,在该细胞系中,ER cDNA编码区的表达由莫洛尼鼠白血病病毒长末端重复序列驱动。我们提供证据表明,ER cDNA的编码区而非莫洛尼鼠白血病病毒长末端重复序列拥有ER下调所必需的序列。观察到的下调发生在配体结合、蛋白质以及mRNA水平。早在E2处理后3小时就观察到蛋白质和mRNA水平显著下降。此外,18 - 24小时时配体结合出现最大下调,mRNA水平达到对照的约20%。Rat1 + ER细胞中的ER下调仅部分被放线菌酮抑制,因此提示ER直接参与了这一过程。E2似乎不影响ER转录本的稳定性,这意味着负调控发生在转录水平。最后,由于我们能够证明ER与部分cDNA序列结合,我们提出一种机制,即ER与其假定的负性元件结合导致上游启动子的转录抑制。

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