Ellis J, Talbot D, Dillon N, Grosveld F
Laboratory of Gene Structure and Expression, National Institute for Medical Research, London, UK.
EMBO J. 1993 Jan;12(1):127-34. doi: 10.1002/j.1460-2075.1993.tb05638.x.
Transgenes linked to the beta-globin locus control region (LCR) are transcribed in a copy-dependent manner that is independent of the integration site. It has previously been shown that the LCR 5'HS2 region does not require its NF-E2 dimer binding site for LCR activity. In this paper we analyse synthetic 5'HS2 core constructs containing point mutations in the other factor binding sites 3' of the NF-E2 dimer site. The results show that 5'HS2 core is a partially active LCR that functions in a concatamer of at least two copies but not when present as a single copy in transgenic mice and that no single binding site within 5'HS2 is required for position-independent expression. In addition, the H-BP factor is identical to upstream stimulatory factor (USF) and full enhancement levels by 5'HS2 core in MEL cells require a combination of all the factor binding sites. We suggest that 5'HS2 cores in a concatamer interact with each other to establish an area of open chromatin and that this process may be the basis of LCR function.
与β-珠蛋白基因座控制区(LCR)相连的转基因以拷贝依赖的方式进行转录,这种方式与整合位点无关。先前已经表明,LCR的5'HS2区域对于LCR活性并不需要其NF-E2二聚体结合位点。在本文中,我们分析了在NF-E2二聚体位点3'端的其他因子结合位点含有点突变的合成5'HS2核心构建体。结果表明,5'HS2核心是一种部分活性的LCR,其在至少两个拷贝的串联体中起作用,但在转基因小鼠中以单拷贝存在时则不起作用,并且5'HS2内没有单个结合位点对于位置独立表达是必需的。此外,H-BP因子与上游刺激因子(USF)相同,并且在MEL细胞中5'HS2核心的完全增强水平需要所有因子结合位点的组合。我们认为,串联体中的5'HS2核心相互作用以建立开放染色质区域,并且这个过程可能是LCR功能的基础。