Gong Peng, Martin Craig T
Department of Chemistry, University of Massachusetts Amherst, Amherst, Massachusetts 01003-9336, USA.
J Biol Chem. 2006 Aug 18;281(33):23533-44. doi: 10.1074/jbc.M604023200. Epub 2006 Jun 21.
Abortive transcription, the premature release of short transcripts 2-8 bases in length, is a unique feature of transcription, accompanying the transition from initiation to elongation in all RNA polymerases. The current study focuses on major factors that relate to the stability of initially transcribing abortive complexes in T7 RNA polymerase. Building on previous studies, results reveal that collapse of the DNA from the downstream end of the bubble is a major contributor to the characteristic instability of abortive complexes. Furthermore, transcription from a novel DNA construct containing a nick between positions -14 and -13 of the nontemplate strand suggests that the more flexible promoter reduces somewhat the strain inherent in initially transcribing complexes, with a resulting decrease in abortive product release. Finally, as assessed by exonuclease III footprinting and transcription profiles, a DNA construct defective in bubble collapse specifically from the downstream end exhibits less abortive cycling and little perturbation of the final transition to elongation, including the process of promoter release.
流产转录,即长度为2 - 8个碱基的短转录本的过早释放,是转录的一个独特特征,伴随着所有RNA聚合酶从起始到延伸的转变。当前的研究聚焦于与T7 RNA聚合酶中初始转录流产复合物稳定性相关的主要因素。基于之前的研究,结果表明从泡状结构下游末端的DNA解链是流产复合物特征性不稳定性的主要促成因素。此外,从非模板链-14和-13位之间含有一个切口的新型DNA构建体进行转录表明,更具柔性的启动子在一定程度上降低了初始转录复合物中固有的张力,从而导致流产产物释放减少。最后,通过核酸外切酶III足迹分析和转录图谱评估,一种特异性地从下游末端存在泡状结构解链缺陷的DNA构建体表现出较少的流产循环,并且对最终向延伸的转变(包括启动子释放过程)几乎没有干扰。