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大肠杆菌半乳糖网络中的信号整合

Signal integration in the galactose network of Escherichia coli.

作者信息

Semsey Szabolcs, Krishna Sandeep, Sneppen Kim, Adhya Sankar

机构信息

Laboratory of Molecular Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892-4264, USA.

出版信息

Mol Microbiol. 2007 Jul;65(2):465-76. doi: 10.1111/j.1365-2958.2007.05798.x.

Abstract

The gal regulon of Escherichia coli contains genes involved in galactose transport and metabolism. Transcription of the gal regulon genes is regulated in different ways by two iso-regulatory proteins, Gal repressor (GalR) and Gal isorepressor (GalS), which recognize the same binding sites in the absence of d-galactose. DNA binding by both GalR and GalS is inhibited in the presence of d-galactose. Many of the gal regulon genes are activated in the presence of the adenosine cyclic-3',5'-monophosphate (cAMP)-cAMP receptor protein (CRP) complex. We studied transcriptional regulation of the gal regulon promoters simultaneously in a purified system and attempted to integrate the two small molecule signals, d-galactose and cAMP, that modulate the isoregulators and CRP respectively, at each promoter, using Boolean logic. Results show that similarly organized promoters can have different input functions. We also found that in some cases the activity of the promoter and the cognate gene can be described by different logic gates. We combined the transcriptional network of the galactose regulon, obtained from our experiments, with literature data to construct an integrated map of the galactose network. Structural analysis of the network shows that at the interface of the genetic and metabolic network, feedback loops are by far the most common motif.

摘要

大肠杆菌的半乳糖调节子包含参与半乳糖运输和代谢的基因。半乳糖调节子基因的转录由两种同型调节蛋白,即半乳糖阻遏物(GalR)和半乳糖同型阻遏物(GalS)以不同方式进行调控,它们在缺乏d-半乳糖时识别相同的结合位点。在d-半乳糖存在时,GalR和GalS与DNA的结合均受到抑制。许多半乳糖调节子基因在腺苷环化-3',5'-单磷酸(cAMP)-cAMP受体蛋白(CRP)复合物存在时被激活。我们在一个纯化系统中同时研究了半乳糖调节子启动子的转录调控,并尝试使用布尔逻辑在每个启动子处整合分别调节同型调节蛋白和CRP的两种小分子信号,即d-半乳糖和cAMP。结果表明,组织方式相似的启动子可以具有不同的输入功能。我们还发现,在某些情况下,启动子和相关基因的活性可以用不同的逻辑门来描述。我们将从实验中获得的半乳糖调节子转录网络与文献数据相结合,构建了半乳糖网络的综合图谱。网络的结构分析表明,在遗传网络和代谢网络的界面处,反馈环是迄今为止最常见的基序。

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