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Kinetics of RNA polymerase-promoter complex formation: effects of nonspecific DNA-protein interactions.

机译:RNA聚合酶-启动子复合物形成的动力学:非特异性DNA-蛋白质相互作用的影响。

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摘要

The rates of formation of RNA polymerase-promoter open complexes at the galactose P2 and lactose UV5 promoters of E. coli were studied using polyacrylamide gels to separate the heparin-resistant complexes from unbound DNA. Both the apparent rate and extent of reaction at these promoters are inhibited at excess RNA polymerase. This inhibition, which can be relieved by the addition of non-promoter DNA, is interpreted to be the result of occlusion of the promoter site by nonspecifically bound polymerase. Additionally, biphasic kinetics are observed at both gal P2 and lac UV5, but not at the PR promoter of phage lambda. This behavior disappears when the concentration of RNA polymerase in the binding reaction is less than that of the promoter fragment. It is proposed that at excess enzyme nonspecifically bound polymerase molecules sliding along the DNA may "bump" closed complexes from the promoter site thereby reducing the rate of open complex formation. Kinetics mechanisms quantifying both the occlusion and bumping phenomena are presented.
机译:使用聚丙烯酰胺凝胶分离未结合的DNA中的肝素抗性复合物,研究了大肠杆菌半乳糖P2和乳糖UV5启动子上RNA聚合酶启动子开放复合物的形成速率。这些启动子的表观反应速率和反应程度在过量的RNA聚合酶上均受到抑制。可以通过添加非启动子DNA来缓解这种抑制作用,这被认为是非特异性结合的聚合酶封闭启动子位点的结果。此外,在gal P2和lac UV5处均观察到双相动力学,但在噬菌体λ的PR启动子处未观察到。当结合反应中RNA聚合酶的浓度小于启动子片段的浓度时,此行为消失。有人提出,在过量的酶上,沿着DNA滑动的非特异性结合的聚合酶分子可能会从启动子位点“撞上”封闭的复合物,从而降低开放复合物形成的速率。提出了量化闭塞和碰撞现象的动力学机制。

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