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酵母U6 RNA基因启动子的结构

Architecture of a yeast U6 RNA gene promoter.

作者信息

Eschenlauer J B, Kaiser M W, Gerlach V L, Brow D A

机构信息

Department of Biomolecular Chemistry, University of Wisconsin, Madison 53706-1532.

出版信息

Mol Cell Biol. 1993 May;13(5):3015-26. doi: 10.1128/mcb.13.5.3015-3026.1993.

Abstract

The promoters of vertebrate and yeast U6 small nuclear RNA genes are structurally dissimilar, although both are recognized by RNA polymerase III. Vertebrate U6 RNA genes have exclusively upstream promoters, while the U6 RNA gene from the yeast Saccharomyces cerevisiae (SNR6) has internal and downstream promoter elements that match the tRNA gene intragenic A- and B-block elements, respectively. Substitution of the SNR6 A or B block greatly diminished U6 RNA accumulation in vivo, and a subcellular extract competent for RNA polymerase III transcription generated nearly identical DNase I protection patterns over the SNR6 downstream B block and a tRNA gene intragenic B block. We conclude that the SNR6 promoter is functionally similar to tRNA gene promoters, although the effects of extragenic deletion mutations suggest that the downstream location of the SNR6 B block imposes unique positional constraints on its function. Both vertebrate and yeast U6 RNA genes have an upstream TATA box element not normally found in tRNA genes. Substitution of the SNR6 TATA box altered the site of transcription initiation in vivo, while substitution of sequences further upstream had no effect on SNR6 transcription. We present a model for the SNR6 transcription complex that explains these results in terms of their effects on the binding of transcription initiation factor TFIIIB.

摘要

脊椎动物和酵母U6小核RNA基因的启动子在结构上不同,尽管两者都由RNA聚合酶III识别。脊椎动物的U6 RNA基因只有上游启动子,而来自酿酒酵母(SNR6)的U6 RNA基因具有内部和下游启动子元件,分别与tRNA基因的基因内A和B框元件相匹配。SNR6的A或B框替换大大减少了体内U6 RNA的积累,并且一种能够进行RNA聚合酶III转录的亚细胞提取物在SNR6下游B框和tRNA基因的基因内B框上产生了几乎相同的DNase I保护模式。我们得出结论,SNR6启动子在功能上与tRNA基因启动子相似,尽管基因外缺失突变的影响表明SNR6 B框的下游位置对其功能施加了独特的位置限制。脊椎动物和酵母的U6 RNA基因都有一个上游TATA框元件,这在tRNA基因中通常不存在。SNR6 TATA框的替换改变了体内转录起始位点,而上游更远序列的替换对SNR6转录没有影响。我们提出了一个SNR6转录复合体的模型,根据其对转录起始因子TFIIIB结合的影响来解释这些结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d32b/359694/cdfb450b05d8/molcellb00017-0392-a.jpg

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