Ko Je, Heyduk Tomasz
*Edward A. Doisy Department of Biochemistry and Molecular Biology, St. Louis University Medical School, 1100 S. Grand Blvd., St. Louis, MO 63104, U.S.A.
Biochem J. 2014 Oct 1;463(1):135-44. doi: 10.1042/BJ20140179.
Promoter escape by RNA polymerase, the transition between the initiation and elongation, is a critical step that defines transcription output at many promoters. In the present study we used a real-time fluorescence assay for promoter melting and escape to study the determinants of the escape. Perturbation of core promoter-polymerase contacts had opposing effects on the rates of melting and escape, demonstrating a direct role of core promoter elements sequence in setting not only the kinetics of promoter melting, but also the kinetics of promoter escape. The start of RNA synthesis is accompanied by an enlargement of the transcription bubble and pulling in of the downstream DNA into the enzyme, resulting in DNA scrunching. Promoter escape results in collapse of the enlarged bubble. To test whether the energy that could be potentially released by the collapse of the bubble plays a role in determining escape kinetics, we measured the rates of promoter escape in promoter constructs, in which the amount of this energy was perturbed by introducing sequence mismatches. We found no significant changes in the rate of promoter escape with these promoter constructs suggesting that the energy released upon bubble collapse does not play a critical role in determining the kinetics of promoter escape.
RNA聚合酶的启动子逃逸,即起始与延伸之间的转换,是一个关键步骤,它决定了许多启动子的转录输出。在本研究中,我们使用实时荧光测定法来检测启动子解链和逃逸,以研究逃逸的决定因素。核心启动子与聚合酶接触的扰动对解链和逃逸速率有相反的影响,这表明核心启动子元件序列不仅在设定启动子解链动力学方面,而且在启动子逃逸动力学方面都起着直接作用。RNA合成的起始伴随着转录泡的扩大以及下游DNA被拉入酶中,导致DNA压缩。启动子逃逸导致扩大的泡的塌陷。为了测试泡塌陷可能释放的能量是否在决定逃逸动力学中起作用,我们测量了启动子构建体中启动子逃逸的速率,在这些构建体中,通过引入序列错配来扰动这种能量的量。我们发现这些启动子构建体的启动子逃逸速率没有显著变化,这表明泡塌陷时释放的能量在决定启动子逃逸动力学中不发挥关键作用。