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核糖体蛋白基因中的琥珀突变:无效抑制刺激操纵子特异性转录。

An amber mutation in a ribosomal protein gene: ineffective suppression stimulates operon-specific transcription.

作者信息

Delcuve G, Dennis P P

出版信息

J Bacteriol. 1981 Sep;147(3):997-1001. doi: 10.1128/jb.147.3.997-1001.1981.

Abstract

The effects of inefficient suppression and the accompanying polarity of an amber mutation in the ribosomal protein gene rplC (L3) on the transcriptional activities of several ribosomal protein operons were investigated. The L3 gene is proximally located in the S10 operon. Inefficient suppression of the mutation specifically stimulated transcription of regions both proximal and distal to the site of mutation by about twofold. In contrast, no effect on the transcriptional activity of regions within the alpha and spc ribosomal protein operons was observed. Thus, transcription of the S10 operon could be actively and specifically regulated in response to a deficiency in one or more of the protein products from the operon. We presume that this transcriptional control acts at the level of transcription initiation, but we cannot exclude the possibility of some other unknown transcriptional regulatory mechanism.

摘要

研究了核糖体蛋白基因rplC(L3)中琥珀突变的低效抑制作用及其伴随的极性对几个核糖体蛋白操纵子转录活性的影响。L3基因位于S10操纵子的近端。对该突变的低效抑制特异性地刺激了突变位点近端和远端区域的转录,约为两倍。相比之下,未观察到对α和spc核糖体蛋白操纵子内区域转录活性的影响。因此,S10操纵子的转录可以响应操纵子中一种或多种蛋白质产物的缺乏而被积极且特异性地调节。我们推测这种转录控制作用于转录起始水平,但我们不能排除其他未知转录调节机制的可能性。

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本文引用的文献

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