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首页> 外文期刊>Journal of Molecular Biology >Fluorescence characterization of the transcription bubble in elongation complexes of T7 RNA polymerase
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Fluorescence characterization of the transcription bubble in elongation complexes of T7 RNA polymerase

机译:T7 RNA聚合酶延伸复合物中转录气泡的荧光特征

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摘要

The various kinetic and thermodynamic models for transcription elongation all require an understanding of the nature of the melted bubble which moves with the RNA polymerase active site. Is the general nature of the bubble system-dependent or are there common energetic requirements which constrain a bubble in any RNA polymerases? T7 RNA polymerase is one of the simplest RNA polymerases and is the system for which we have the highest-resolution structural information. However, there is no high-resolution information available for a stable elongation complex. In order to directly map melted regions of the DNA in a functionally paused elongation complex, we have introduced fluorescent probes site-specifically into the DNA. Like 2-aminopurine, which substitutes for adenine bases, the fluorescence intensity of the new probe, pyrrolo-dC, which substitutes for cytosine bases, is sensitive to its environment. Specifically, the fluorescence is quenched in duplex DNA relative to its fluorescence in single-stranded DNA, such that the probe provides direct information on local melting of the DNA. Placement of this new probe at specific positions in the non-template strand shows clearly that the elongation bubble extends about eight bases upstream of the pause site, while 2-aminopurine probes show that the elongation bubble extends only about one nucleotide downstream of the last base incorporated. The positioning of the active site very close to the downstream edge of the bubble is consistent with previous studies and with similar studies of the promoter-bound, pre-initiation complex. The results show clearly that the RNA:DNA hybrid can be no more than eight nucleotides in length, and characterization of different paused species suggests preliminarily that these dimensions are not sequence or position dependent. Finally, the results confirm that the ternary complex is not stable with short lengths of transcript, but persists for a substantial time when paused in the middle or at the (runoff) end of duplex DNA. (C) 2001 Academic Press. [References: 34]
机译:转录延伸的各种动力学和热力学模型都需要了解随着RNA聚合酶活性位点移动的融化气泡的性质。气泡系统的一般性质是依赖的还是有共同的能量需求来限制任何RNA聚合酶中的气泡? T7 RNA聚合酶是最简单的RNA聚合酶之一,是我们拥有最高分辨率结构信息的系统。但是,没有可用于稳定伸长复合物的高分辨率信息。为了直接绘制功能暂停的延伸复合物中DNA的融解区域,我们已将荧光探针位点特异性引入DNA中。像2-氨基嘌呤替代腺嘌呤碱基一样,新探针pyrroolo-dC替代胞嘧啶碱基的荧光强度对环境敏感。具体而言,相对于单链DNA中的荧光,双链DNA中的荧光被淬灭,因此探针可提供有关DNA局部熔解的直接信息。将此新探针放在非模板链中特定位置的位置清楚地表明,延伸气泡在暂停位点的上游延伸了约八个碱基,而2-氨基嘌呤探针显示了延伸气泡仅在最后一个碱基的下游延伸了约一个核苷酸。合并。活性位点的位置非常靠近气泡的下游边缘,这与以前的研究以及与启动子结合的预起始复合物的相似研究一致。结果清楚地表明,RNA:DNA杂种的长度不得超过8个核苷酸,并且对不同停顿物种的表征初步表明这些尺寸与序列或位置无关。最后,结果证实三元复合物在短转录本时不稳定,但在双链体DNA的中间或(径流)末端暂停时会持续相当长的时间。 (C)2001学术出版社。 [参考:34]

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