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大肠杆菌tdcABC启动子的功能分析:TdcA和TdcR的作用

Functional analysis of the tdcABC promoter of Escherichia coli: roles of TdcA and TdcR.

作者信息

Hagewood B T, Ganduri Y L, Datta P

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor 48109-0606.

出版信息

J Bacteriol. 1994 Oct;176(20):6214-20. doi: 10.1128/jb.176.20.6214-6220.1994.

Abstract

The efficient expression of the tdc operon of Escherichia coli requires the products of two regulatory genes, tdcR and tdcA. We have identified the transcription site of tdcR by primer extension mapping and established the translation start site of TdcR by mutational analysis of its reading frame. In a tdcR tdcABC deletion strain, tdcR+ promoted high-level LacZ expression from a lambda tdcAB-lacZ lysogen and mutations introduced in tdcR resulted in a greater than sixfold decrease in LacZ level. In-frame deletions of tdcA also reduced LacZ expression, and chromosomal and plasmid-borne tdcA+ increased the LacZ level in tdcA mutant lysogens. Interestingly, multicopy tdcA+ plasmids introduced into tdcR mutant strains completely restored tdc expression. In separate experiments we found that mutations in the tdc promoter DNA around positions -70, -140, and -175 greatly reduced tdc expression relative to that for the wild-type promoter and the tdcP mutation around -175 prevented multicopy tdcA+ from rescuing tdcR mutants. Furthermore, competition experiments revealed that a wild-type promoter fragment encompassing the -175 region cloned into a plasmid reduced tdc expression by titrating TdcA in vivo, and this effect was reversed with excess TdcA. These results suggest that in tdcR+ cells TdcR interacts with tdcP and/or TdcA to enhance tdc transcription whereas in tdcR mutant cells a new tdcP-TdcA complex around -175 in the native promoter bypasses the requirement for TdcR. On the basis of the accumulated data summarized here and elsewhere we propose that multiple transcription factors enhance tdc operon expression by bending and looping of the promoter DNA to form an active transcription complex.

摘要

大肠杆菌tdc操纵子的高效表达需要两个调控基因tdcR和tdcA的产物。我们通过引物延伸图谱鉴定了tdcR的转录位点,并通过对其阅读框的突变分析确定了TdcR的翻译起始位点。在tdcR tdcABC缺失菌株中,tdcR+促进了λtdcAB-lacZ溶原菌中LacZ的高水平表达,tdcR中引入的突变导致LacZ水平下降超过六倍。tdcA的框内缺失也降低了LacZ表达,染色体和质粒携带的tdcA+增加了tdcA突变溶原菌中的LacZ水平。有趣的是,导入tdcR突变菌株的多拷贝tdcA+质粒完全恢复了tdc表达。在单独的实验中,我们发现tdc启动子DNA中-70、-140和-175位置附近的突变相对于野生型启动子大大降低了tdc表达,-175附近的tdcP突变阻止了多拷贝tdcA+拯救tdcR突变体。此外,竞争实验表明,克隆到质粒中的包含-175区域的野生型启动子片段通过在体内滴定TdcA降低了tdc表达,并且过量的TdcA可以逆转这种效应。这些结果表明,在tdcR+细胞中,TdcR与tdcP和/或TdcA相互作用以增强tdc转录,而在tdcR突变细胞中,天然启动子中-175附近的新tdcP-TdcA复合物绕过了对TdcR的需求。基于此处和其他地方总结的累积数据,我们提出多种转录因子通过弯曲和环化启动子DNA形成活性转录复合物来增强tdc操纵子的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a912/196961/4c0ed1798008/jbacter00038-0068-a.jpg

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