Guérin S L, Moore D D
Department of Molecular Biology, Massachusetts General Hospital, Boston 02114.
Mol Endocrinol. 1988 Nov;2(11):1101-7. doi: 10.1210/mend-2-11-1101.
Rat (rGH) is expressed exclusively in cells from the anterior lobe of the pituitary gland. Using DNAsel footprinting assays, we have examined both pituitary and nonpituitary cell nuclear extracts for proteins which bind specifically to the rGH promoter and 5'-flanking region. In agreement with previous studies, we have located binding sites between -96 and -65, and between -148 and -118 for proteins which have been termed GC1 and GC2, respectively. The GC2 footprint is found using extracts from both pituitary and nonpituitary cells, but GC1 is observed only in pituitary cells. We have also located a binding site for an additional pituitary-specific protein upstream from the GC1 binding site, between -241 and -220. The footprint for this protein, which we call GC3, is found with pituitary extracts, but not with extracts from nine other nonpituitary cell types. Although this pattern of activity is similar to that of GC1, competition experiments with synthetic oligonucleotides show that the two proteins are distinct. Deletion of the GC3 binding site has only a small effect on rGH promoter activity in transiently transfected pituitary cells and fibroblasts.
大鼠生长激素(rGH)仅在垂体前叶细胞中表达。利用脱氧核糖核酸酶足迹分析,我们检测了垂体和非垂体细胞核提取物中与rGH启动子及5'侧翼区特异性结合的蛋白质。与先前研究一致,我们分别在-96至-65以及-148至-118区域定位了与分别被称为GC1和GC2的蛋白质的结合位点。在垂体和非垂体细胞提取物中均发现了GC2足迹,但仅在垂体细胞中观察到GC1。我们还在GC1结合位点上游-241至-220区域定位了另一种垂体特异性蛋白质的结合位点。这种我们称为GC3的蛋白质的足迹在垂体提取物中发现,但在其他九种非垂体细胞类型的提取物中未发现。尽管这种活性模式与GC1相似,但用合成寡核苷酸进行的竞争实验表明这两种蛋白质是不同的。在瞬时转染的垂体细胞和成纤维细胞中,删除GC3结合位点对rGH启动子活性仅有微小影响。