Olsthoorn R C, Zoog S, van Duin J
Department of Biochemistry, Leiden Institute of Chemistry, Gorlaeus Laboratories, University of Leiden, The Netherlands.
Mol Microbiol. 1995 Jan;15(2):333-9. doi: 10.1111/j.1365-2958.1995.tb02247.x.
The initiation region of the coat-protein gene of RNA bacteriophage MS2 adopts a well-defined hairpin structure with the start codon occupying the loop position, while the Shine-Dalgarno (SD) sequence is part of the stem. In a previous study, we introduced mutations in this hairpin that changed its thermodynamic stability. The resulting phages evolved to regain the wild-type stability by second-site compensatory substitutions. Neither the original nor the suppressor mutations were in the SD region. In the present analysis, we have made changes in the SD region that shorten or extend its complementarity to the 3' end of 16S rRNA and monitored their evolution to a stable pseudorevertant species. Phages in which the SD complementarity was decreased evolved an initiator hairpin of lower stability than wild type while those in which the complementarity was extended evolved a hairpin with an increased stability. We conclude that weaker SD sequences still allow maximal translation if the secondary structure of the ribosome-landing site is destabilized accordingly. Alternatively, translation-initiation regions with a stronger secondary structure still allow maximal expression, if the SD complementarity is extended. These findings support a previously published model in which the SD interaction helps the ribosome to melt the structure in a translation-initiation region.
RNA噬菌体MS2的外壳蛋白基因起始区域呈现出一种明确的发夹结构,起始密码子位于环的位置,而夏因-达尔加诺(SD)序列是茎的一部分。在之前的一项研究中,我们在这个发夹结构中引入了突变,改变了其热力学稳定性。产生的噬菌体通过第二位点补偿性替换进化以恢复野生型稳定性。原始突变和抑制突变均不在SD区域。在本分析中,我们对SD区域进行了改变,缩短或延长了其与16S rRNA 3'端的互补性,并监测它们向稳定假回复物种的进化。SD互补性降低的噬菌体进化出稳定性低于野生型的起始发夹,而互补性延长的噬菌体进化出发夹稳定性增加的情况。我们得出结论,如果核糖体着陆位点的二级结构相应地不稳定,较弱的SD序列仍然允许最大程度的翻译。或者,如果SD互补性延长,具有较强二级结构的翻译起始区域仍然允许最大程度的表达。这些发现支持了之前发表的一个模型,其中SD相互作用有助于核糖体解开翻译起始区域的结构。