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首页> 外文期刊>Journal of Molecular Biology >Characterization of structural features important for T7 RNAP elongation complex stability reveals competing complex conformations and a role for the non-template strand in RNA displacement.
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Characterization of structural features important for T7 RNAP elongation complex stability reveals competing complex conformations and a role for the non-template strand in RNA displacement.

机译:对T7 RNAP延伸复合物稳定性重要的结构特征的表征揭示了竞争性复合物构象以及非模板链在RNA置换中的作用。

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摘要

We have characterized the roles of the phage T7 RNA polymerase (RNAP) thumb subdomain and the RNA binding activity of the N-terminal domain in elongation complex (EC) stability by evaluating how disrupting these structures affects the dissociation rates of halted ECs. Our results reveal distinct roles for these elements in EC stabilization. On supercoiled or partially single-stranded templates the enzyme with a deletion of the thumb subdomain is exceptionally unstable. However, on linear duplex templates the polymerase which has been proteolytically cleaved within the N-terminal domain is the most unstable. The differences in the effects of these RNAP modifications on the stability of ECs on the different templates appear to be due to differences in EC structure: on the linear duplex templates the RNA is properly displaced from the DNA, but on the supercoiled or partially single-stranded templates an extended RNA:DNA hybrid makes a larger contribution to the conformational state of the EC. The halted EC can therefore exist either in a conformation in which the RNA is displaced from the DNA and forms an interaction with the RNAP, or in a conformation in which a more extended RNA:DNA hybrid is present and the RNA:RNAP interaction is less extensive. The partitioning between these competing conformations appears to be a function of the energetics of template reannealing and the relative strengths of the RNA:RNAP interaction and the RNA:DNA hybrid. Copyright 1999 Academic Press.
机译:我们已经通过评估破坏这些结构如何影响终止的EC的解离来表征噬菌体T7 RNA聚合酶(RNAP)拇指亚结构域和N末端结构域在延伸复合物(EC)稳定性中的RNA结合活性。我们的结果揭示了这些元素在EC稳定中的独特作用。在超螺旋或部分单链模板上,拇指亚结构域缺失的酶异常不稳定。但是,在线性双链体模板上,在N端结构域内被蛋白水解切割的聚合酶是最不稳定的。这些RNAP修饰对EC在不同模板上稳定性的影响的差异似乎是由于EC结构的差异所致:在线性双链模板上,RNA可以适当地从DNA上置换出来,但是在超螺旋或部分单-链模板延伸的RNA:DNA杂合体对EC的构象状态做出了较大贡献。因此,被终止的EC可以以RNA从DNA置换并与RNAP形成相互作用的构象存在,或者以存在更广泛的RNA:DNA杂种并且RNA:RNAP相互作用较少的构象存在。广泛。这些竞争构象之间的分配似乎是模板再退火的能量学以及RNA:RNAP相互作用和RNA:DNA杂种的相对强度的函数。版权所有1999,学术出版社。

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