Shimada Tomohiro, Takada Hiraku, Yamamoto Kaneyoshi, Ishihama Akira
Micro-Nano Technology Research Center, Hosei University, Koganai, Tokyo, 184-8584, Japan.
Chemical Resources Laboratory, Tokyo Institute of Technology, Nagatsuda, Yokohama, 226-8503, Japan.
Genes Cells. 2015 Nov;20(11):915-31. doi: 10.1111/gtc.12282. Epub 2015 Sep 2.
The two-component system (TCS) is a sophisticated bacterial signal transduction system for regulation of genome transcription in response to environmental conditions. The EnvZ-OmpR system is one of the well-characterized TCS of Escherichia coli, responding to changes in environmental osmolality. Regulation has largely focused on the differential expression of two porins, OmpF and OmpC, which transport small molecules across the outer membrane. Recently, it has become apparent that OmpR serves a more global regulatory role and regulates additional targets. To identify the entire set of regulatory targets of OmpR, we performed the genomic SELEX screening of OmpR-binding sites along the E. coli genome. As a result, more than 30 novel genes have been identified to be under the direct control of OmpR. One abundant group includes the genes encoding a variety of membrane-associated transporters that mediate uptake or efflux of small molecules, while another group encodes a set of transcription regulators, raising a concept that OmpR is poised to control a diverse set of responses by altering downstream transcriptional regulators.
双组分系统(TCS)是一种复杂的细菌信号转导系统,用于响应环境条件调节基因组转录。EnvZ-OmpR系统是大肠杆菌中一个特征明确的TCS,可响应环境渗透压的变化。调节主要集中在两种孔蛋白OmpF和OmpC的差异表达上,它们负责跨外膜转运小分子。最近,很明显OmpR发挥着更广泛的调节作用并调节其他靶点。为了鉴定OmpR的全套调节靶点,我们沿着大肠杆菌基因组对OmpR结合位点进行了基因组SELEX筛选。结果,已鉴定出30多个新基因受OmpR的直接控制。一个丰富的类别包括编码多种介导小分子摄取或外排的膜相关转运蛋白的基因,而另一类别编码一组转录调节因子,这提出了一个概念,即OmpR准备通过改变下游转录调节因子来控制多种反应。