Trudel M, Costantini F
Department of Genetics and Development, College of Physicians and Surgeons, Columbia University, New York, New York 10032.
Genes Dev. 1987 Nov;1(9):954-61. doi: 10.1101/gad.1.9.954.
The human beta-globin and G gamma-globin genes are expressed at different stages of human development and also show distinct temporal patterns of expression when transferred into the mouse germ line. In transgenic mice, the beta-globin gene is expressed only in fetal and adult erythroid cells, whereas the G gamma-globin gene is active only in embryonic erythroid cells. Previous experiments suggested that beta-globin 3' sequences were important for expression in mouse fetal and adult erythroid cells, and in this paper we directly demonstrate the presence of an enhancer in the 3'-flanking region of the gene. First, deletion of sequences between 605 and 895 bp, 3' to the poly(A) site, results in a 10-fold reduction in the average level of expression of the beta-globin gene in transgenic mouse fetal livers. Second, a DNA fragment including beta-globin 3'-flanking sequences [425-1480 bp from the poly(A) site], in either orientation, activates transcription from the otherwise silent G gamma-globin promoter in the mouse fetal liver; DNA sequences between 150 and 730 bp or between 920 and 1680 bp, 3' to the beta-globin gene, are inactive by this assay. Together, these experiments identify an enhancer, in the region approximately 600-900 bp, 3' to the beta-globin poly(A) site, which contributes to the differential stage-specific expression of the beta-globin and G gamma-globin genes.
人类β-珠蛋白基因和Gγ-珠蛋白基因在人类发育的不同阶段表达,并且当转入小鼠种系时也表现出不同的表达时间模式。在转基因小鼠中,β-珠蛋白基因仅在胎儿和成年红细胞中表达,而Gγ-珠蛋白基因仅在胚胎红细胞中活跃。先前的实验表明,β-珠蛋白3'序列对于在小鼠胎儿和成年红细胞中的表达很重要,在本文中我们直接证明了该基因3'侧翼区域存在一个增强子。首先,删除多聚腺苷酸(poly(A))位点下游605至895 bp之间的序列,导致转基因小鼠胎儿肝脏中β-珠蛋白基因平均表达水平降低10倍。其次,一个包含β-珠蛋白3'侧翼序列(从多聚腺苷酸位点起425 - 1480 bp)的DNA片段,无论其方向如何,都能激活小鼠胎儿肝脏中原本沉默的Gγ-珠蛋白启动子的转录;通过该检测方法,β-珠蛋白基因下游150至730 bp之间或920至1680 bp之间的DNA序列无活性。这些实验共同确定了一个增强子,位于β-珠蛋白多聚腺苷酸位点下游约600 - 900 bp区域,它有助于β-珠蛋白基因和Gγ-珠蛋白基因的差异阶段特异性表达。