Winkler M E, Mullis K, Barnett J, Stroynowski I, Yanofsky C
Proc Natl Acad Sci U S A. 1982 Apr;79(7):2181-5. doi: 10.1073/pnas.79.7.2181.
A DNA oligomer 15 nucleotides long was used to probe the involvement of RNA secondary structure in the control of transcription termination at the attenuator of the tryptophan (trp) operon of Escherichia coli. This 15-mer is perfectly complementary to a segment of trp RNA that is thought to play a role in regulation of attenuation. When added to an in vitro transcription reaction mixture containing wild-type E. coli or Salmonella typhimurium trp operon templates, the complementary 15-mer caused a 4-fold increase in read-through transcription. By contrast, the 15-mer did not affect attenuation when a mutant E. coli template was used that does not allow formation of a crucial RNA secondary structure. Control experiments established that oligomers that were not complementary to E. coli trp leader RNA did not affect attenuation and that the 15-mer did not reduce termination when the transcript lacked a complementary region. Other experiments established that the 15-mer did not increase read-through transcription by allowing RNA polymerase molecules that might have already stopped at the attenuator to resume transcription. These findings provide direct support for the view that alternate base-paired structures control transcription termination at the trp attenuator.
一段15个核苷酸长的DNA寡聚物被用于探究RNA二级结构在大肠杆菌色氨酸(trp)操纵子衰减子处转录终止控制中的作用。这个15聚体与trp RNA的一段序列完全互补,该序列被认为在衰减调控中发挥作用。当将其添加到含有野生型大肠杆菌或鼠伤寒沙门氏菌trp操纵子模板的体外转录反应混合物中时,互补的15聚体使通读转录增加了4倍。相比之下,当使用不允许形成关键RNA二级结构的突变大肠杆菌模板时,15聚体不影响衰减。对照实验表明,与大肠杆菌trp前导RNA不互补的寡聚物不影响衰减,并且当转录本缺乏互补区域时,15聚体不会减少终止。其他实验表明,15聚体不是通过允许可能已经在衰减子处停止的RNA聚合酶分子恢复转录来增加通读转录的。这些发现为交替碱基配对结构控制trp衰减子处转录终止的观点提供了直接支持。