Program in Biological Chemistry, Bates College, 5 Andrews Road, Lewiston, ME 04240, USA.
Biochem Biophys Res Commun. 2013 Mar 29;433(1):73-8. doi: 10.1016/j.bbrc.2013.02.063. Epub 2013 Feb 26.
Regulation of the enzootic cycle in Borrelia burgdorferi requires a shift to the RNA polymerase alternative sigma factor, RpoS. We used in vitro and in vivo assays to assess the relative importance of the putative Shine-Dalgarno sequence and its sequestration for the translational efficiency of rpoS. We created mutant leader regions in which we either removed the Shine-Dalgarno sequence, disrupted the secondary structure or both. Binding assays and toeprint assays demonstrated that both the presence and the availability of the Shine-Dalgarno sequence are important to the efficiency and specificity of ribosome binding. Adding a DsrABb mimic in the form of a single-stranded DNA oligonucleotide increased the level and specificity of binding ribosomes to the transcript with an extended leader, presumably by making the Shine-Dalgarno sequence available for binding. In in vivo assays we confirmed that the Shine-Dalgarno sequence must be both present and un-sequestered in order for translation to proceed efficiently. The longer transcript was significantly better translated in B. burgdorferi at 37 °C than at 26 °C, lending support to the hypothesis that DsrABb acts as a temperature-dependent stimulator of translation. These studies demonstrate that translational regulation of gene expression in B. burgdorferi may be an important mechanism for responding to environmental signals important in the enzootic cycle.
调节伯氏疏螺旋体的地方病循环需要 RNA 聚合酶替代 sigma 因子 RpoS 的转变。我们使用体外和体内测定来评估假定的 Shine-Dalgarno 序列及其对 rpoS 翻译效率的隔离的相对重要性。我们创建了突变的先导区域,在这些区域中,我们要么去除了 Shine-Dalgarno 序列,要么破坏了二级结构或两者兼而有之。结合测定和足迹测定表明,Shine-Dalgarno 序列的存在和可用性对于核糖体结合的效率和特异性都很重要。以单链 DNA 寡核苷酸的形式添加 DsrABb 模拟物增加了延长的先导转录物与核糖体结合的水平和特异性,推测通过使 Shine-Dalgarno 序列可用于结合。在体内测定中,我们证实为了有效地进行翻译,Shine-Dalgarno 序列必须同时存在且不被隔离。较长的转录物在 37°C 下比在 26°C 下在伯氏疏螺旋体中的翻译效率显著更高,这支持了 DsrABb 作为温度依赖性翻译刺激物的假说。这些研究表明,伯氏疏螺旋体中基因表达的翻译调控可能是响应地方病循环中重要环境信号的重要机制。