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从起始到延伸过程中RNA聚合酶II转录复合物的结构变化。

Structural changes in the RNA polymerase II transcription complex during transition from initiation to elongation.

作者信息

Samkurashvili I, Luse D S

机构信息

Department of Molecular Genetics, Biochemistry and Microbiology, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267, USA.

出版信息

Mol Cell Biol. 1998 Sep;18(9):5343-54. doi: 10.1128/MCB.18.9.5343.

Abstract

We obtained exonuclease III (exoIII) footprints for a series of RNA polymerase II transcription complexes stalled between positions +20 to +51. Downstream advance of the exoIII footprint is normally tightly coordinated with RNA synthesis. However, arrested RNA polymerases slide back along the template, as indicated by exoIII footprints in which the last transcribed base is abnormally close to the downstream edge of the footprint. None of the polymerase II complexes stalled between +20 and +51 were arrested. Nevertheless, the exoIII footprints of complexes with 20-, 23-, or 25-nucleotide RNAs resembled those of arrested complexes, with the last transcribed base very close to the footprint's front edge. The exoIII footprint of the +27 complex was displaced downstream by 17 bp compared to the footprint of the +25 complex. Many complexes between +27 and +42 also showed evidence of sliding back along the template. We compared the effects of template sequence and transcript length by constructing a new template in which the initial transcribed sequence was duplicated beginning at +98. The exoIII footprints of transcription complexes stalled between +122 to +130 on this DNA did not resemble those of arrested complexes, in contrast to the footprints of analogous complexes stalled over the same DNA sequences early in transcription. Our results indicate that the RNA polymerase II transcription complex passes through a major, sequence-independent structural transition about 25 bases downstream of the starting point of transcription. The fully mature form of the elongation complex may not appear until more than 40 bonds have been made.

摘要

我们获得了一系列在+20至+51位之间停滞的RNA聚合酶II转录复合物的核酸外切酶III(exoIII)足迹。exoIII足迹的下游推进通常与RNA合成紧密协调。然而,停滞的RNA聚合酶会沿着模板向后滑动,这由exoIII足迹表明,其中最后转录的碱基异常靠近足迹的下游边缘。在+20和+51之间停滞的聚合酶II复合物均未被阻滞。尽管如此,具有20、23或25个核苷酸RNA的复合物的exoIII足迹类似于被阻滞复合物的足迹,最后转录的碱基非常靠近足迹的前沿。与+25复合物的足迹相比,+27复合物的exoIII足迹向下游移位了17 bp。在+27和+42之间的许多复合物也显示出沿着模板向后滑动的迹象。我们通过构建一个新模板来比较模板序列和转录本长度的影响,在该模板中,初始转录序列从+98开始重复。与转录早期在相同DNA序列上停滞的类似复合物的足迹相反,在该DNA上+122至+130之间停滞的转录复合物的exoIII足迹与被阻滞复合物的足迹不同。我们的结果表明,RNA聚合酶II转录复合物在转录起点下游约25个碱基处经历了一个主要的、与序列无关的结构转变。直到形成超过40个键,延伸复合物的完全成熟形式才可能出现。

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