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重复性和非重复性大鼠核糖体DNA增强子元件对RNA聚合酶I和II体内转录的影响。

Effects of repetitive and non-repetitive rat rDNA enhancer elements on in vivo transcription by RNA polymerases I and II.

作者信息

Ghosh A K, Kermekchiev M, Jacob S T

机构信息

Department of Pharmacology and Molecular Biology, Chicago Medical School, IL 60064.

出版信息

Gene. 1994 Apr 20;141(2):271-5. doi: 10.1016/0378-1119(94)90584-3.

Abstract

Previous study has demonstrated that a far upstream 174-bp spacer sequence of the rat rRNA-encoding (rDNA) gene can function as an enhancer in vitro in an orientation- and distance-independent manner [Dixit et al., J. Biol. Chem. 262 (1987) 11616-11622]. To demonstrate that this element can also function in vivo, two rat rDNA-cat plasmids, one with the 174-bp element and the other without this sequence, were constructed and transfected into CHO cells. Primer extension analysis of the transcripts produced after transfection showed that transcription initiation occurred at the +1 site of the rDNA. The 174-bp sequence stimulated the rat polI promoter activity in cis 4-5-fold over the control (with the promoter alone). This RNA polymerase (polI) enhancer also stimulated the mouse metallothionein-I (MT-I) and SV40 promoter activities in vivo, irrespective of its distance and orientation. Further dissection of the 174-bp element revealed that the stimulatory activity on the RNA polymerase II (polII) promoter resides within the 37-bp and 43-bp domains at the 3' end of the 174-bp element. Unlike this spacer enhancer, the 130-bp repeat element (RE) proximal to the rat promoter [Ghosh et al., Gene 125 (1993) 217-222] was unable to modulate the polII promoter activity in vivo. These data show that while the non-repetitive enhancer sequence of rat rDNA is interchangeable for the polI and polII promoters, the RE is polI-specific.

摘要

先前的研究表明,大鼠核糖体RNA编码(rDNA)基因的一个位于非常上游的174碱基对间隔序列能够在体外以不依赖方向和距离的方式发挥增强子的功能[迪克西特等人,《生物化学杂志》262 (1987) 11616 - 11622]。为了证明该元件在体内也能发挥作用,构建了两个大鼠rDNA - cat质粒,一个带有174碱基对元件,另一个没有该序列,并将其转染到CHO细胞中。对转染后产生的转录本进行引物延伸分析表明,转录起始于rDNA的 +1位点。与对照(仅含启动子)相比,174碱基对序列顺式刺激大鼠RNA聚合酶I(polI)启动子活性4 - 5倍。这种RNA聚合酶(polI)增强子在体内也能刺激小鼠金属硫蛋白 - I(MT - I)和SV40启动子活性,而与它的距离和方向无关。对174碱基对元件的进一步剖析表明,对RNA聚合酶II(polII)启动子的刺激活性存在于174碱基对元件3'端的37碱基对和43碱基对结构域内。与这种间隔增强子不同,大鼠启动子近端的130碱基对重复元件(RE)[戈什等人,《基因》125 (1993) 217 - 222]在体内无法调节polII启动子活性。这些数据表明,虽然大鼠rDNA的非重复增强子序列可在polI和polII启动子之间互换,但RE是polI特异性的。

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