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Collision events between RNA polymerases in convergent transcription studied by atomic force microscopy

机译:原子力显微镜研究聚合转录中RNA聚合酶之间的碰撞事件

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Atomic force microscopy (AFM) has been used to image, at single molecule resolution, transcription events by Escherichia coli RNA polymerase (RNAP) on a linear DNA template with two convergently aligned lambda(pr) promoters. For the first time experimentally, the outcome of collision events during convergent transcription by two identical RNAP has been studied. Measurement of the positions of the RNAP on the DNA, allows distinction of open promoter complexes (OPCs) and elongating complexes (EC) and collided complexes (CC). This discontinuous time-course enables subsequent analysis of collision events where both RNAP remain bound on the DNA. After collision, the elongating RNAP has caused the other (usually stalled) RNAP to back-track along the template. The final positions of the two RNAP indicate that these are collisions between an EC and a stalled EC (SEC) or OPC (previously referred to as sitting-ducks). Interestingly, the distances between the two RNAP show that they are not always at closest approach after 'collision' has caused their arrest.
机译:原子力显微镜(AFM)已用于以单分子分辨率对线性聚合酶链反应(DNA)具有两个聚合对齐的lambda(pr)启动子的大肠杆菌RNA聚合酶(RNAP)的转录事件进行成像。首次通过实验研究了两个相同的RNAP在聚合转录过程中碰撞事件的结果。测量RNAP在DNA上的位置,可以区分开放启动子复合物(OPC)和延伸复合物(EC)和碰撞复合物(CC)。这种不连续的时间过程可以对碰撞事件进行后续分析,其中两个RNAP都保持结合在DNA上。碰撞后,延长的RNAP导致另一个(通常是停滞的)RNAP沿模板后移。这两个RNAP的最终位置表明,这是EC和停滞的EC(SEC)或OPC(以前称为坐鸭)之间的碰撞。有趣的是,两个RNAP之间的距离表明,在“碰撞”导致其被捕后,它们并不总是最接近。

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