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对小鼠β-珠蛋白基因座控制区(LCR)的5'HS2进行靶向缺失研究发现,它对于β-珠蛋白基因座的正常调控并非必不可少。

Targeted deletion of 5'HS2 of the murine beta-globin LCR reveals that it is not essential for proper regulation of the beta-globin locus.

作者信息

Fiering S, Epner E, Robinson K, Zhuang Y, Telling A, Hu M, Martin D I, Enver T, Ley T J, Groudine M

机构信息

Fred Hutchinson Cancer Research Center, Seattle, Washington 98104, USA.

出版信息

Genes Dev. 1995 Sep 15;9(18):2203-13. doi: 10.1101/gad.9.18.2203.

Abstract

The beta-globin locus control region (LCR) is a complex regulatory element that is essential for the appropriate red cell-specific expression of all cis-linked beta-globin genes. Of the five hypersensitive sites that define the LCR, only 5'HS2 has been shown to augment gene expression in vitro in both transient and stable assays, as well as in transgenic mice. Thus, 5'HS2 has been assumed to be an important element for the function of the LCR in vivo. We have utilized homologous recombination in murine embryonic stem (ES) cells and phenotypic analysis in derived mice to investigate the function of 5'HS2 in its normal chromosomal position in the murine beta-globin locus. Replacement of 5'HS2 with a selectable marker gene (delta HS2 + neo) causes a 2-5-fold reduction in expression of all of the genes in the locus, and a more pronounced effect (10-12-fold) on the most 5' embryonic globin gene, Ey, when expression of this gene is first detectable during embryogenesis. The mutation produces no alterations in the developmental timing of expression of the globin genes. When homozygous, the deletion/replacement mutation is lethal in utero, with the embryos dying during the stage of yolk sac and early fetal liver erythropoiesis. To distinguish phenotypic effects resulting from the deletion of 5'HS2 from those attributable to insertion of the selectable marker, the selectable marker was removed by expressing the FLP site-specific recombinase in ES cells harboring the homologous recombination event. Mice derived from these ES cells (delta HS2 delta neo) demonstrated nearly full expression of all the beta-like globin genes on the mutated chromosome. These results indicate that although 5'HS2 demonstrates significant regulatory activities in a variety of assays, deletion of this element from the endogenous beta-globin locus has no significant effect on the timing or extent of expression of the locus. In addition, this result emphasizes that when using homologous recombination to analyze complex regulatory elements in vivo, the inserted selectable marker must be removed to avoid influencing the phenotype of the mutation.

摘要

β-珠蛋白基因座控制区(LCR)是一个复杂的调控元件,对于所有顺式连接的β-珠蛋白基因在红细胞中特异性的正常表达至关重要。在定义LCR的五个超敏位点中,只有5'HS2在瞬时和稳定分析以及转基因小鼠的体外实验中显示能增强基因表达。因此,5'HS2被认为是LCR在体内发挥功能的重要元件。我们利用小鼠胚胎干细胞中的同源重组以及对衍生小鼠的表型分析,来研究5'HS2在小鼠β-珠蛋白基因座正常染色体位置上的功能。用一个选择标记基因(δHS2 + neo)替换5'HS2会导致该基因座中所有基因的表达降低2至5倍,而对最5'端的胚胎珠蛋白基因Ey的影响更为显著(10至12倍),该基因在胚胎发育过程中刚开始能被检测到表达。这种突变不会改变珠蛋白基因表达的发育时间。当突变是纯合子时,缺失/替换突变在子宫内是致死的,胚胎在卵黄囊和早期胎儿肝脏红细胞生成阶段死亡。为了区分因删除5'HS2导致的表型效应和可选择标记插入导致的表型效应,通过在发生同源重组事件的胚胎干细胞中表达FLP位点特异性重组酶来去除选择标记。来自这些胚胎干细胞的小鼠(δHS2 δneo)在突变染色体上的所有β样珠蛋白基因几乎都能完全表达。这些结果表明,尽管5'HS2在各种分析中都显示出显著的调控活性,但从内源性β-珠蛋白基因座中删除该元件对基因座表达的时间或程度没有显著影响。此外,这一结果强调,当使用同源重组在体内分析复杂调控元件时,必须去除插入的选择标记以避免影响突变的表型。

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