Andersen J, Delihas N
Department of Microbiology, School of Medicine, State University of New York, Stony Brook 11794.
Biochemistry. 1990 Oct 2;29(39):9249-56. doi: 10.1021/bi00491a020.
micF RNA regulates the levels of outer membrane protein F (OmpF) in Escherichia coli in response to temperature increase and other stress conditions by decreasing the levels of ompF mRNA (Andersen et al., 1989). A 93-nucleotide micF RNA was synthesized in vitro directly from polymerase chain reaction generated DNA which was designed to contain a functional T7 RNA polymerase promoter upstream of the micF RNA gene and an appropriate restriction site for transcription termination. A transcript (150 nucleotides) containing the ribosomal binding domain of ompF mRNA messenger was synthesized in vitro from the ompF gene cloned into a T7 expression vector. A stable duplex was formed between micF RNA and the 150-nucleotide 5' transcript of ompF mRNA after incubation at 37 degrees C in a physiological buffer. The melting curve of the duplex formed by micF RNA and 150-nucleotide transcript revealed a Tm of 56 degrees C and a delta Tm that spans about 20 degrees C; both are consistent with the proposed structure for the micF/ompF duplex. In addition, as determined by competition studies and UV cross-linking/label-transfer analyses, an E. coli protein was found to bind specifically to micF RNA. The protein also bound weakly to the 150-nucleotide ompF transcript. The data are the first to demonstrate the complex between micF RNA and the 5' end of ompF mRNA and suggest that in vivo a micF ribonucleoprotein (RNP) particle may participate in the destabilization ompF mRNA during thermoregulation of OmpF porin.
micF RNA通过降低ompF mRNA水平来调节大肠杆菌中外膜蛋白F(OmpF)的水平,以应对温度升高和其他应激条件(Andersen等人,1989年)。通过聚合酶链反应产生的DNA直接在体外合成了一种93个核苷酸的micF RNA,该DNA设计为在micF RNA基因上游包含一个功能性T7 RNA聚合酶启动子和一个用于转录终止的合适限制性位点。从克隆到T7表达载体中的ompF基因在体外合成了一个包含ompF mRNA信使核糖体结合结构域的转录本(150个核苷酸)。在生理缓冲液中于37℃孵育后,micF RNA与ompF mRNA的150个核苷酸5'转录本之间形成了稳定的双链体。由micF RNA和150个核苷酸转录本形成的双链体的解链曲线显示Tm为56℃,ΔTm跨度约为20℃;两者均与micF/ompF双链体的提议结构一致。此外,通过竞争研究和紫外线交联/标记转移分析确定,发现一种大肠杆菌蛋白特异性结合micF RNA。该蛋白也与150个核苷酸的ompF转录本弱结合。这些数据首次证明了micF RNA与ompF mRNA 5'端之间的复合物,并表明在体内,micF核糖核蛋白(RNP)颗粒可能在OmpF孔蛋白的温度调节过程中参与ompF mRNA的去稳定化。