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参与转化生长因子-β2基因调控的顺式作用元件和转录因子。

Cis-regulatory elements and transcription factors involved in the regulation of the transforming growth factor-beta 2 gene.

作者信息

Scholtz B, Kelly D, Rizzino A

机构信息

Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha 68198-6805, USA.

出版信息

Mol Reprod Dev. 1995 Jun;41(2):140-8. doi: 10.1002/mrd.1080410204.

Abstract

Embryonal carcinoma (EC) cells and embryonic stem (ES) cells provide useful model systems for studying differentiation during early mammalian development. Previous studies have demonstrated that differentiation of two restricted mouse EC cell lines is accompanied by activation of the TGF-beta 2 gene. Moreover, one negative and two positive regulatory regions upstream of the transcription start site were identified, which appear to play key roles in the transcriptional regulation of the human TGF-beta 2 gene. In this report, we demonstrate that the same three regulatory regions strongly influence the activity of the TGF-beta 2 promoter in differentiated cells derived from the multipotent human EC cell line, NT2/D1, and from the murine totipotent ES cell line, CCE. We also determined that the same three regions are active in the regulation of the TGF-beta 2 gene in the murine parietal endoderm-like cell line, PYS-2. However, an additional negative regulatory region appears to contribute to the regulation of the TGF-beta 2 gene in PYS-2 cells. Last, mutation of a CRE/ATF element located just upstream of the transcription start site of the TGF-beta 2 gene reduces significantly the activity of the TGF-beta 2 promoter in the differentiated cells. However, in contrast to our previous findings, our gel mobility shift analyses demonstrate that this CRE/ATF element is bound by similar proteins in nuclear extracts prepared from undifferentiated and differentiated mouse EC cells as well as from undifferentiated human EC cells.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

胚胎癌(EC)细胞和胚胎干细胞为研究早期哺乳动物发育过程中的分化提供了有用的模型系统。先前的研究表明,两种受限的小鼠EC细胞系的分化伴随着TGF-β2基因的激活。此外,在转录起始位点上游鉴定出一个负调控区和两个正调控区,它们似乎在人TGF-β2基因的转录调控中起关键作用。在本报告中,我们证明相同的三个调控区对源自多能人类EC细胞系NT2/D1和小鼠全能胚胎干细胞系CCE的分化细胞中TGF-β2启动子的活性有强烈影响。我们还确定相同的三个区域在小鼠壁内胚层样细胞系PYS-2中对TGF-β2基因的调控中是活跃的。然而,一个额外的负调控区似乎参与了PYS-2细胞中TGF-β2基因的调控。最后,TGF-β2基因转录起始位点上游的CRE/ATF元件的突变显著降低了分化细胞中TGF-β2启动子的活性。然而,与我们之前的发现相反,我们的凝胶迁移率变动分析表明,在从未分化和分化的小鼠EC细胞以及未分化的人类EC细胞制备的核提取物中,该CRE/ATF元件被相似的蛋白质结合。(摘要截短于250字)

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