Jacques J P, Susskind M M
Department of Biological Sciences, University of Southern California, Los Angeles 90089-1340.
Nucleic Acids Res. 1991 Jun 11;19(11):2971-7. doi: 10.1093/nar/19.11.2971.
Natural antisense RNAs have stem-loop (hairpin) secondary structures that are important for their function. The sar antisense RNA of phage P22 is unusual: the 3' half of the molecule forms an extensive stem-loop, but potential structures for the 5' half are not predicted to be thermodynamically stable. We devised a novel method to determine the secondary structure of sar RNA by examining the electrophoretic mobility on non-denaturing gels of numerous sar mutants. The results show that the wild-type RNA forms a 5' stem-loop that enhances electrophoretic mobility. All mutations that disrupt the stem of this hairpin decrease mobility of the RNA. In contrast, mutations that change the sequence of the stem without disrupting it (e.g. change G.U to A.U) do not affect mobility. Nearly all mutations in single-stranded regions of the structure also have no effect on mobility. Confirmation of the proposed 5' stem-loop was obtained by constructing and analyzing compensatory double mutants. Combinations of mutations that restore a base-pair of the stem also restore mobility. The genetic phenotypes of sar mutants confirm that the proposed secondary structure is correct and is essential for optimal activity of the antisense RNA in vivo.
天然反义RNA具有茎环(发夹)二级结构,这对其功能很重要。噬菌体P22的sar反义RNA不同寻常:该分子的3' 半段形成一个广泛的茎环,但5' 半段的潜在结构预计在热力学上不稳定。我们设计了一种新方法,通过检测众多sar突变体在非变性凝胶上的电泳迁移率来确定sar RNA的二级结构。结果表明,野生型RNA形成一个增强电泳迁移率的5' 茎环。所有破坏该发夹茎的突变都会降低RNA的迁移率。相比之下,改变茎序列但不破坏它的突变(例如将G.U变为A.U)不会影响迁移率。该结构单链区域的几乎所有突变对迁移率也没有影响。通过构建和分析补偿性双突变体,证实了所提出的5' 茎环。恢复茎碱基对的突变组合也恢复了迁移率。sar突变体的遗传表型证实,所提出的二级结构是正确的,并且对于反义RNA在体内的最佳活性至关重要。