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抑制非洲爪蟾tRNA基因体外转录的5'侧翼序列。

5'-flanking sequences that inhibit in vitro transcription of a xenopus laevis tRNA gene.

作者信息

Hipskind R A, Clarkson S G

出版信息

Cell. 1983 Oct;34(3):881-90. doi: 10.1016/0092-8674(83)90545-7.

Abstract

Two series of deletion mutants have been constructed in the 5'-flanking DNA of a variant methionine tRNA gene of X. laevis. When assayed in homologous cell-free extracts, mutants of both series are expressed at very different levels and they initiate transcription at either or both of the two major sites used by the wild-type gene. No similarities are evident in the 5'-flanking regions of well expressed mutants, but two DNA segments are identified that inhibit transcription. The most inhibitory one, between residues -20 and -12, consists of 9 bp of alternating purines and pyrimidines: TGCGCGTGC. The second has only a weak inhibitory effect when in its normal location from -43 to -32, but it can reduce transcription severely when brought closer to the gene; it is composed of 12 bp of alternating purines and pyrimidines with one residue out of alternation: ATGCACAGCGCA. The composition of these tracts has some possible implications for their conformation, which may account for their inhibition of gene expression.

摘要

在非洲爪蟾一个变异的甲硫氨酸tRNA基因的5'侧翼DNA中构建了两个系列的缺失突变体。当在同源无细胞提取物中进行检测时,两个系列的突变体均以非常不同的水平表达,并且它们在野生型基因使用的两个主要位点中的一个或两个位点起始转录。表达良好的突变体的5'侧翼区域没有明显的相似性,但鉴定出两个抑制转录的DNA片段。抑制作用最强的片段位于-20至-12位残基之间,由9个交替的嘌呤和嘧啶碱基对组成:TGCGCGTGC。第二个片段在其从-43至-32的正常位置时只有较弱的抑制作用,但当它靠近基因时会严重降低转录;它由12个交替的嘌呤和嘧啶碱基对组成,其中有一个碱基不参与交替:ATGCACAGCGCA。这些片段的组成对其构象有一些可能的影响,这可能解释了它们对基因表达的抑制作用。

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