Suppr超能文献

干细胞和分化细胞中细胞增强子的差异需求。

Differential requirements for cellular enhancers in stem and differentiated cells.

作者信息

Vogt T F, Compton R S, Scott R W, Tilghman S M

机构信息

Institute for Cancer Research, Philadelphia, PA 19111.

出版信息

Nucleic Acids Res. 1988 Jan 25;16(2):487-500. doi: 10.1093/nar/16.2.487.

Abstract

Multiple cis-acting regulatory elements consisting of three cellular enhancers and a proximal promoter element have been identified in the region upstream of the mouse alpha-fetoprotein (AFP) gene. We examined the role of these sequences during differentiation by the introduction of modified AFP genes into cells at different stages of commitment to its expression. Modified AFP genes introduced stably into F9 embryonal carcinoma stem cells by DNA transfection were silent until activated by treatment with retinoic acid to form visceral endoderm. Their activation required the presence of both the enhancer and proximal promoter domains. The introduced genes activated simultaneously with the endogenous AFP genes, but reached maximal levels of expression more rapidly, suggesting a greater initial accessibility to transcription factors. In contrast, when modified AFP genes were stably introduced into HepG2 cells, a human hepatoma cell line that constitutively expresses the AFP gene, the proximal promoter sequences were sufficient to direct a low level of expression. The absolute requirement for the AFP enhancers in F9 cells but not in HepG2 cells supports a model by which there is an obligate requirement for enhancers during differentiation in addition to their role in enhancing gene expression after differentiation.

摘要

在小鼠甲胎蛋白(AFP)基因上游区域已鉴定出由三个细胞增强子和一个近端启动子元件组成的多个顺式作用调节元件。我们通过将修饰的AFP基因导入处于其表达不同承诺阶段的细胞中,研究了这些序列在分化过程中的作用。通过DNA转染稳定导入F9胚胎癌细胞系的修饰AFP基因在未用视黄酸处理激活形成内胚层之前是沉默的。它们的激活需要增强子和近端启动子结构域同时存在。导入的基因与内源性AFP基因同时被激活,但达到最大表达水平的速度更快,这表明对转录因子的初始可及性更高。相反,当将修饰的AFP基因稳定导入组成型表达AFP基因的人肝癌细胞系HepG2细胞中时,近端启动子序列足以指导低水平的表达。F9细胞中对AFP增强子的绝对需求而HepG2细胞中则不需要,这支持了一种模型,即除了增强子在分化后增强基因表达的作用外,在分化过程中对增强子有强制性需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/003c/334674/9a3c97b6a71d/nar00144-0120-a.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验