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一个750碱基对的感觉整合区域指导大肠杆菌GadE酸抗性调节因子的全局控制。

A 750 bp sensory integration region directs global control of the Escherichia coli GadE acid resistance regulator.

作者信息

Sayed Atef K, Foster John W

机构信息

Department of Microbiology and Immunology, University of South Alabama College of Medicine, Mobile, AL 36688, USA.

出版信息

Mol Microbiol. 2009 Mar;71(6):1435-50. doi: 10.1111/j.1365-2958.2009.06614.x. Epub 2009 Feb 11.

Abstract

Escherichia coli survives pH 2 environments through an acid resistance (AR) system regulated by the transcriptional activator GadE. Numerous proteins control gadE at an upstream, conserved, 798 bp intergenic region. We show this region produces three transcripts starting at -124 (T1), -324/-317 (T2) and -566 (T3) bp from the gadE start codon. Transcriptional lacZ fusions to gadE promoter regions revealed P1 and P3 were active while P2 alone was not. However, pairing P3 with P2 activated P2 and increased expression 20-fold above P3 alone. The fusions were transferred to Salmonella, which lacks this AR system, and plasmid-borne E. coli-specific regulators EvgA, YdeO, GadE and GadX were introduced. Data revealed that YdeO and GadX activate P3, P2 and P3P2, while GadE autoactivates P1 and represses P3 and P3P2. The developing model indicates that different signals activate YdeO, GadX, or an MnmE-dependent regulator, which stimulate gadE transcription from the P3 and P2 promoters. Once made, GadE activates P1 and represses P3 and P2. The P1 region also enables efficient downstream transcription and translation of the P3 or P2 transcripts. Evidence indicates the entire 750 bp sensory integration locus is necessary for a versatile response.

摘要

大肠杆菌通过由转录激活因子GadE调控的耐酸(AR)系统在pH 2环境中存活。许多蛋白质在一个上游保守的798 bp基因间区域控制gadE。我们发现该区域产生三种转录本,起始于距gadE起始密码子-124 bp(T1)、-324/-317 bp(T2)和-566 bp(T3)处。与gadE启动子区域的转录lacZ融合表明P1和P3有活性,而单独的P2没有活性。然而,将P3与P2配对可激活P2,并使表达比单独的P3增加20倍。这些融合被转移到缺乏这种AR系统的沙门氏菌中,并引入了质粒携带的大肠杆菌特异性调节因子EvgA、YdeO、GadE和GadX。数据显示,YdeO和GadX激活P3、P2和P3P2,而GadE自激活P1并抑制P3和P3P2。正在形成的模型表明,不同的信号激活YdeO、GadX或一种依赖MnmE的调节因子,它们刺激从P3和P2启动子转录gadE。一旦产生,GadE激活P1并抑制P3和P2。P1区域还能使P3或P2转录本进行有效的下游转录和翻译。有证据表明,整个750 bp的感觉整合位点对于一种通用的反应是必要的。

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