Higashi Kyohei, Kashiwagi Keiko, Taniguchi Shiho, Terui Yusuke, Yamamoto Kaneyoshi, Ishihama Akira, Igarashi Kazuei
Graduate School of Pharmaceutical Sciences, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba 260-8675, Japan.
J Biol Chem. 2006 Apr 7;281(14):9527-37. doi: 10.1074/jbc.M513752200. Epub 2006 Feb 13.
Polypeptide release factor 2 (RF2) in Escherichia coli is known to be synthesized by a +1 frameshift at the 26th UGA codon of RF2 mRNA. Polyamines were found to stimulate the +1 frameshift of RF2 synthesis, an effect that was reduced by excess RF2. Polyamine stimulation of +1 frameshift of RF2 synthesis was observed at the early logarithmic phase, which is the important phase in determination of the overall rate of cell growth. A Shine-Dalgarno-like sequence was necessary for an efficient +1 frameshift of RF2 synthesis, but not for polyamine stimulation. Spectinomycin, tetracycline, streptomycin, and neomycin reduced polyamine stimulation of the +1 frameshift of RF2 synthesis. The results suggest that a structural change of the A site on 30 S ribosomal subunits is important for polyamine stimulation of the +1 frameshift. The level of mRNAs of ribosomal proteins and elongation factors having UAA as termination codon was enhanced by polyamines, and OppA synthesis from OppA mRNA having UAA as termination codon was more enhanced by polyamines than that from OppA mRNA having a UGA termination codon. Furthermore, synthesis of ribosomal protein L20 and elongation factor G from the mRNAs having a UAA termination codon was enhanced by polyamines at the level of translation and transcription. The results suggest that some protein synthesis from mRNAs having a UAA termination codon is enhanced at the level of translation through polyamine stimulation of +1 frameshift of RF2 synthesis. It is concluded that prfB encoding RF2 is a new member of the polyamine modulon.
已知大肠杆菌中的多肽释放因子2(RF2)是通过RF2 mRNA第26个UGA密码子处的+1移码合成的。发现多胺可刺激RF2合成的+1移码,过量的RF2会降低这种效应。在对数早期观察到多胺对RF2合成+1移码的刺激作用,对数早期是决定细胞总体生长速率的重要阶段。对于RF2合成有效的+1移码而言,一个类似Shine-Dalgarno的序列是必需的,但对于多胺刺激则不是。壮观霉素、四环素、链霉素和新霉素可降低多胺对RF2合成+1移码的刺激作用。结果表明,30 S核糖体亚基A位点的结构变化对于多胺刺激+1移码很重要。以UAA作为终止密码子的核糖体蛋白和延伸因子的mRNA水平通过多胺得到提高,并且与具有UGA终止密码子的OppA mRNA相比,以UAA作为终止密码子的OppA mRNA的OppA合成受到多胺的增强作用更大。此外,多胺在翻译和转录水平上增强了具有UAA终止密码子的mRNA的核糖体蛋白L20和延伸因子G的合成。结果表明,通过多胺刺激RF2合成的+1移码,一些具有UAA终止密码子的mRNA的蛋白质合成在翻译水平上得到增强。得出的结论是,编码RF2的prfB是多胺调节子的一个新成员。