Jackson P D, Evans T, Nickol J M, Felsenfeld G
Laboratory of Molecular Biology, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.
Genes Dev. 1989 Dec;3(12A):1860-73. doi: 10.1101/gad.3.12a.1860.
We describe the interaction of two adjacent binding sites in the chicken beta-globin gene promoter with regulatory factors present in erythroid cells. One of these sites is a palindromic sequence (Pal) that binds a member of the nuclear factor 1 family; the other is the CACCC sequence found in most adult beta-globin promoters. Transfection of primary erythrocytes with plasmids carrying the gene coupled to truncated promoters reveals that the Pal site inhibits and the CACCC site stimulates expression. Nuclease protection experiments on intact nuclei show that at early stages of embryonic development, the CACCC site is occupied and the Pal site is vacant, but as development progresses, the Pal site is filled gradually and the CACCC site loses its bound protein. Beyond day 15 of development, Pal is completely occupied and CACCC is empty in vivo. Parallel DNase I footprinting and gel retardation studies in vitro show that nuclear extracts contain sharply increasing Pal-binding activity as development proceeds, but CACCC-binding activity falls off only slightly. We show that the two factors bind to their sites in vitro in an anticooperative manner and conclude that this could account for the observed changes in site occupancy in vivo. Our results suggest that the Pal factor may play a role in the shutdown of adult beta-globin expression late in erythroid development.
我们描述了鸡β-珠蛋白基因启动子中两个相邻结合位点与红细胞中存在的调控因子之间的相互作用。其中一个位点是一个回文序列(Pal),它结合核因子1家族的一个成员;另一个是大多数成人β-珠蛋白启动子中发现的CACCC序列。用携带与截短启动子相连的基因的质粒转染原代红细胞表明,Pal位点抑制表达,而CACCC位点刺激表达。对完整细胞核进行的核酸酶保护实验表明,在胚胎发育的早期阶段,CACCC位点被占据,Pal位点为空,但随着发育的进行,Pal位点逐渐被填满,而CACCC位点失去其结合蛋白。在发育超过15天后,Pal在体内完全被占据,而CACCC为空。体外平行的DNase I足迹分析和凝胶阻滞研究表明,随着发育的进行,核提取物中Pal结合活性急剧增加,但CACCC结合活性仅略有下降。我们表明,这两种因子在体外以反协同方式与其位点结合,并得出结论,这可以解释体内观察到的位点占据变化。我们的结果表明,Pal因子可能在红细胞发育后期成人β-珠蛋白表达的关闭中起作用。