Schulz V P, Reznikoff W S
Department of Biochemistry, College of Agricultural and Life Sciences, University of Wisconsin-Madison 53706.
J Mol Biol. 1990 Jan 20;211(2):427-45. doi: 10.1016/0022-2836(90)90363-Q.
mRNA secondary structure can be an important determinant of the efficiency of translation initiation. To study the effect of secondary structure on translation initiation, in vitro secondary structure analysis was performed on 32 lacZ RNA transcripts that differ in their in vivo translation initiation efficiencies because of mutations. We have shown that well-translated RNA has a relatively unstructured translation initiation region in vitro. In contrast, the translation initiation region of many of the poorly translated RNA transcripts is involved in a stem-loop structure. Mutations that decrease the in vitro stability of the stem-loop increase the frequency of translation initiation. The sequences responsible for forming this stem-loop structure were localized to a small region of RNA. The results confirm some of the previous predictions of the RNA secondary structure of the mutant RNAs based on computer modeling, but they disagree with some of the predicted long-range interactions.
信使核糖核酸(mRNA)二级结构可能是翻译起始效率的一个重要决定因素。为了研究二级结构对翻译起始的影响,对32个乳糖操纵子β半乳糖苷酶(lacZ)RNA转录本进行了体外二级结构分析,这些转录本由于突变而在体内翻译起始效率上存在差异。我们已经表明,翻译良好的RNA在体外具有相对无结构的翻译起始区域。相比之下,许多翻译不佳的RNA转录本的翻译起始区域参与了茎环结构。降低茎环体外稳定性的突变会增加翻译起始频率。负责形成这种茎环结构的序列定位于RNA的一个小区域。结果证实了之前基于计算机建模对突变RNA的RNA二级结构的一些预测,但与一些预测的长程相互作用不一致。