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通过在GH4垂体细胞中稳定表达显性负性Ets选择性抑制大鼠催乳素基因

Selective repression of rat prolactin gene by stable expression of dominant-negative Ets in GH4 pituitary cells.

作者信息

Tentler John J, Bradford Andrew P, Schweppe Rebecca E, Gutierrez-Hartmann Arthur

机构信息

Department of Medicine, University of Colorado, Denver, CO 80262, USA.

出版信息

Endocrine. 2003 Feb-Mar;20(1-2):3-12. doi: 10.1385/ENDO:20:1-2:3.

Abstract

Members of the Ets family of transcription factors are key regulators controlling prolactin (PRL) gene expression. Utilizing a transient transfection approach and the GH4 rat pituitary cell line, we have shown that Ets- 1 acts synergistically with the pituitary-specific POU homeodomain transcription factor, Pit-1, to mediate basal and Ras-induced regulation of the proximal (-425) rat PRL (rPRL) promoter. Although the transient transfection approach has provided important information regarding rPRL proximal promoter regulation, the role of Ets factors in the regulation of the intact, endogenous PRL promoter has not been explored. To address this area of question, we created several clonal GH4 cell lines that stably express either dominant-negative Ets (dn-EtsZ) or dominant-active Ets (VP16 Ets) constructs and used these cell lines as a model system to analyze the role of Ets factors on endogenous PRL gene expression. Northern blot analysis of these cells showed that PRL mRNA levels were dramatically reduced, by an average of 80%, in the cell lines expressing dn-Ets compared to vector-only controls. Conversely, stable expression of the dominant-active VP16 Ets led to an average threefold increase in PRL mRNA. GH4 cells expressing dn-EtsZ displayed significantly lower levels of intracellular PRL protein content and greatly diminished secretion of PRL into the cell culture medium, compared to vector-only controls. Consistent with our previous observations, the mRNA levels for growth hormone were unaffected by either dn-EtsZ or VP16 Ets expression. Expression of dn-EtsZ reduced Pit-1 mRNA levels by about 30%; however, the intracellular levels of Pit-1 protein were unchanged. Taken together, these results verify and strengthen the view that Ets factors play a critical role in the regulation of endogenous PRL gene expression and PRL protein production.

摘要

转录因子Ets家族成员是控制催乳素(PRL)基因表达的关键调节因子。利用瞬时转染方法和GH4大鼠垂体细胞系,我们已经表明Ets-1与垂体特异性POU同源域转录因子Pit-1协同作用,介导近端(-425)大鼠PRL(rPRL)启动子的基础调节和Ras诱导的调节。尽管瞬时转染方法提供了有关rPRL近端启动子调节的重要信息,但Ets因子在完整的内源性PRL启动子调节中的作用尚未得到探索。为了解决这个问题领域,我们创建了几个稳定表达显性负性Ets(dn-EtsZ)或显性活性Ets(VP16 Ets)构建体的克隆GH4细胞系,并将这些细胞系用作模型系统来分析Ets因子对内源性PRL基因表达的作用。对这些细胞的Northern印迹分析表明,与仅载体对照相比,在表达dn-Ets的细胞系中PRL mRNA水平显著降低,平均降低80%。相反,显性活性VP16 Ets的稳定表达导致PRL mRNA平均增加三倍。与仅载体对照相比,表达dn-EtsZ的GH4细胞显示细胞内PRL蛋白含量显著降低,并且PRL分泌到细胞培养基中的量大大减少。与我们之前的观察结果一致,生长激素的mRNA水平不受dn-EtsZ或VP16 Ets表达的影响。dn-EtsZ的表达使Pit-1 mRNA水平降低约30%;然而,Pit-1蛋白的细胞内水平没有变化。综上所述,这些结果证实并强化了Ets因子在内源性PRL基因表达和PRL蛋白产生的调节中起关键作用的观点。

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