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小鼠核糖体DNA间隔区中的一个新型启动子在体内和体外均具有活性。

A novel promoter in the mouse rDNA spacer is active in vivo and in vitro.

作者信息

Kuhn A, Grummt I

机构信息

Institut für Biochemie, Universität Würzburg, FRG.

出版信息

EMBO J. 1987 Nov;6(11):3487-92. doi: 10.1002/j.1460-2075.1987.tb02673.x.

Abstract

We have identified a novel RNA polymerase I (pol I) transcription initiation site within the 'non-transcribed' spacer of mouse rDNA. This spacer promoter is located about 2 kb upstream of the 45S pre-rRNA promoter and directs specific transcription initiations both in a cell-free system using truncated templates and in vivo after transfection into mouse cells. The spacer promoter contains an 11 out of 16 bases match to the core element of the major ribosomal gene promoter and is oriented in the same direction. It exerts a significantly lower transcriptional activity as compared to the 45S pre-rRNA promoter. The elongation of transcripts initiated at the spacer promoter is stopped at a termination signal located 170 bp upstream of the pre-rRNA start site. Since it has been previously shown that, in addition to its terminator function, the same sequence motif acts as an upstream element of the adjacent gene promoter, the function of the spacer promoter may be to capture free pol I molecules and drive them to the gene promoter in order to achieve the high level of transcription characteristic of eukaryotic rRNA genes.

摘要

我们在小鼠核糖体DNA的“非转录”间隔区内鉴定出一个新的RNA聚合酶I(pol I)转录起始位点。该间隔区启动子位于45S前体rRNA启动子上游约2 kb处,在使用截短模板的无细胞系统中以及转染到小鼠细胞后的体内均能指导特异性转录起始。间隔区启动子与主要核糖体基因启动子的核心元件有16个碱基中的11个匹配,且方向相同。与45S前体rRNA启动子相比,它的转录活性明显较低。在间隔区启动子处起始的转录本延伸在位于前体rRNA起始位点上游170 bp处的终止信号处停止。由于先前已表明,除了其终止子功能外,相同的序列基序还作为相邻基因启动子的上游元件,间隔区启动子的功能可能是捕获游离的pol I分子并将它们驱动到基因启动子,以实现真核rRNA基因特有的高水平转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55a7/553807/6611a94e4d1b/emboj00251-0273-a.jpg

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