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A Slow ATP-induced Conformational Change Limits the Rate of DNA Binding but Not the Rate of β Clamp Binding by the Escherichia coli γ Complex Clamp Loader*

机译:缓慢的ATP诱导的构象变化会限制DNA结合的速率,但不会限制大肠杆菌γ复合物夹具装载器对β夹具的结合速率*

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摘要

In Escherichia coli, the γ complex clamp loader loads the β-sliding clamp onto DNA. The β clamp tethers DNA polymerase III to DNA and enhances the efficiency of replication by increasing the processivity of DNA synthesis. In the presence of ATP, γ complex binds β and DNA to form a ternary complex. Binding to primed template DNA triggers γ complex to hydrolyze ATP and release the clamp onto DNA. Here, we investigated the kinetics of forming a ternary complex by measuring rates of γ complex binding β and DNA. A fluorescence intensity-based β binding assay was developed in which the fluorescence of pyrene covalently attached to β increases when bound by γ complex. Using this assay, an association rate constant of 2.3 × 107 m−1 s−1 for γ complex binding β was determined. The rate of β binding was the same in experiments in which γ complex was preincubated with ATP before adding β or added directly to β and ATP. In contrast, when γ complex is preincubated with ATP, DNA binding is faster than when γ complex is added to DNA and ATP at the same time. Slow DNA binding in the absence of ATP preincubation is the result of a rate-limiting ATP-induced conformational change. Our results strongly suggest that the ATP-induced conformational changes that promote β binding and DNA binding differ. The slow ATP-induced conformational change that precedes DNA binding may provide a kinetic preference for γ complex to bind β before DNA during the clamp loading reaction cycle.
机译:在大肠埃希氏菌中,γ复合钳装载器将β滑动钳装载到DNA上。 β将DNA聚合酶III固定在DNA上,并通过增加DNA合成的过程性来提高复制效率。在ATP的存在下,γ复合物与β和DNA结合形成三元复合物。结合至引发的模板DNA会触发γ复合物水解ATP,并释放钳位到DNA上。在这里,我们通过测量结合β和DNA的γ络合物的比率来研究形成三元络合物的动力学。开发了基于荧光强度的β结合测定法,其中当与γ配合物结合时,共价附于β的pyr的荧光增加。使用该测定法,确定γ复合物结合β的缔合速率常数为2.3×107 m-1 s-1。在将γ复合物与ATP预孵育后再添加β或直接添加至β和ATP的实验中,β结合的速率相同。相反,当将γ复合物与ATP预孵育时,与将γ复合物同时添加到DNA和ATP中相比,DNA结合会更快。在不进行ATP预孵育的情况下,DNA结合缓慢是限速ATP诱导的构象变化的结果。我们的结果强烈表明,ATP诱导的构象变化(促进β结合和DNA结合)不同。在DNA结合之前,缓慢的ATP诱导的构象变化可能为钳位加载反应周期中的γ复合物在DNA之前结合β的动力学提供了偏好。

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