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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Kinetic analysis of PCNA clamp binding and release in the clamp loading reaction catalyzed by Saccharomyces cerevisiae replication factor C
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Kinetic analysis of PCNA clamp binding and release in the clamp loading reaction catalyzed by Saccharomyces cerevisiae replication factor C

机译:酿酒酵母复制因子C催化PCNA钳结合和在钳加载反应中释放的动力学分析

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摘要

DNA polymerases require a sliding clamp to achieve processive DNA synthesis. The toroidal clamps are loaded onto DNA by clamp loaders, members of the AAA+ family of ATPases. These enzymes utilize the energy of ATP binding and hydrolysis to perform a variety of cellular functions. In this study, a clamp loader-clamp binding assay was developed to measure the rates of ATP-dependent clamp binding and ATP-hydrolysis-dependent clamp release for the Saccharomyces cerevisiae clamp loader (RFC) and clamp (PCNA). Pre-steady-state kinetics of PCNA binding showed that although ATP binding to RFC increases affinity for PCNA, ATP binding rates and ATP-dependent conformational changes in RFC are fast relative to PCNA binding rates. Interestingly, RFC binds PCNA faster than the Escherichia coli gamma complex clamp loader binds the beta-clamp. In the process of loading clamps on DNA, RFC maintains contact with PCNA while PCNA closes, as the observed rate of PCNA closing is faster than the rate of PCNA release, precluding the possibility of an open clamp dissociating from DNA. Rates of clamp closing and release are not dependent on the rate of the DNA binding step and are also slower than reported rates of ATP hydrolysis, showing that these rates reflect unique intramolecular reaction steps in the clamp loading pathway. (C) 2014 Elsevier B.V. All rights reserved.
机译:DNA聚合酶需要滑动钳才能进行DNA合成。环形夹具通过夹具加载器(ATPase AAA +家族的成员)加载到DNA上。这些酶利用ATP结合和水解的能量来执行多种细胞功能。在这项研究中,开发了夹具装载器-夹具结合测定法,以测量酿酒酵母夹具装载器(RFC)和夹具(PCNA)的ATP依赖性夹具结合和ATP水解依赖性夹具释放的速率。 PCNA结合的稳态前动力学表明,尽管ATP与RFC的结合增加了对PCNA的亲和力,但RFC中的ATP结合率和ATP依赖性构象变化相对于PCNA结合率却是很快的。有趣的是,RFC绑定PCNA的速度比大肠杆菌伽玛复合物钳装载器绑定β-钳的速度快。在将夹具加载到DNA的过程中,RFC会在PCNA关闭时保持与PCNA的接触,因为观察到的PCNA闭合速率快于PCNA释放速率,从而排除了开放的夹具从DNA上解离的可能性。夹具闭合和释放的速率不依赖于DNA结合步骤的速率,并且也比报道的ATP水解速率慢,表明这些速率反映了夹具加载途径中独特的分子内反应步骤。 (C)2014 Elsevier B.V.保留所有权利。

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