Angerer A, Enz S, Ochs M, Braun V
Universität Tübingen, Germany.
Mol Microbiol. 1995 Oct;18(1):163-74. doi: 10.1111/j.1365-2958.1995.mmi_18010163.x.
Transcription of the ferric citrate transport system of Escherichia coli K-12 is repressed by Fe(2+)-Fur and activated by ferric citrate. Ferric citrate does not have to enter the cytoplasm; it initiates a signal transduction mechanism by binding to the outer membrane receptor FecA. Presumably, a conformational change is transmitted in a TonB-dependent manner to the FecR protein. FecR activates FecI, and FecI activates transcription of the fecABCDE transport genes. In this communication, FecI was isolated after cloning fecI downstream of an ideal ribosome-binding site. Overexpressed FecI formed inclusion bodies which were solubilized and purified in active form using a mild detergent. FecI, in conjunction with RNA polymerase core enzyme, directed transcription from the fecA promoter in an in vitro run-off transcription assay. Furthermore, FecI retarded the electrophoretic mobility of a specific 75 bp DNA fragment located upstream of fecA. An in vivo competition experiment between the fecA promoters of wild-type and mutant strains identified the nucleotide positions 2747, 2749, 2751 and 2753, located within the 75 bp fragment, as important for FecI-induced transcription. Mobility band shift of fecA promoter DNA caused by cell lysates required growth of cells in the presence of ferric citrate and expression of FecA, FecI and FecR. These data support the previous assignment of FecI, based on sequence homologies, to a new subfamily of eubacterial RNA polymerase sigma 70 factors that respond to extra-cytoplasmic stimuli and regulate extracytoplasmic functions.
大肠杆菌K-12的柠檬酸铁转运系统的转录受Fe(2+)-Fur抑制,并被柠檬酸铁激活。柠檬酸铁不必进入细胞质;它通过与外膜受体FecA结合启动信号转导机制。据推测,构象变化以TonB依赖的方式传递给FecR蛋白。FecR激活FecI,而FecI激活fecABCDE转运基因的转录。在本通讯中,在将fecI克隆到理想核糖体结合位点下游后分离出了FecI。过表达的FecI形成包涵体,使用温和去污剂将其溶解并以活性形式纯化。在体外径流转录试验中,FecI与RNA聚合酶核心酶一起指导从fecA启动子的转录。此外,FecI使位于fecA上游的特定75 bp DNA片段的电泳迁移率减慢。野生型和突变株fecA启动子之间的体内竞争实验确定了位于75 bp片段内的核苷酸位置2747、2749、2751和2753对FecI诱导的转录很重要。由细胞裂解物引起的fecA启动子DNA的迁移带移位需要细胞在柠檬酸铁存在下生长以及FecA、FecI和FecR的表达。这些数据支持了基于序列同源性先前将FecI归为应对胞外刺激并调节胞外功能的真细菌RNA聚合酶σ70因子新亚家族的分类。