School of Chemistry, University of Wollongong, Wollongong, New South Wales, Australia.
EMBO J. 2013 May 2;32(9):1322-33. doi: 10.1038/emboj.2012.347. Epub 2013 Feb 22.
Processive DNA synthesis by the αεθ core of the Escherichia coli Pol III replicase requires it to be bound to the β2 clamp via a site in the α polymerase subunit. How the ε proofreading exonuclease subunit influences DNA synthesis by α was not previously understood. In this work, bulk assays of DNA replication were used to uncover a non-proofreading activity of ε. Combination of mutagenesis with biophysical studies and single-molecule leading-strand replication assays traced this activity to a novel β-binding site in ε that, in conjunction with the site in α, maintains a closed state of the αεθ-β2 replicase in the polymerization mode of DNA synthesis. The ε-β interaction, selected during evolution to be weak and thus suited for transient disruption to enable access of alternate polymerases and other clamp binding proteins, therefore makes an important contribution to the network of protein-protein interactions that finely tune stability of the replicase on the DNA template in its various conformational states.
大肠杆菌 Pol III 复制酶的 αεθ 核心进行连续 DNA 合成需要通过 α 聚合酶亚基中的一个位点与 β2 夹结合。ε 校对外切核酸酶亚基如何影响 α 的 DNA 合成在此之前尚不清楚。在这项工作中,使用 DNA 复制的批量测定来揭示 ε 的非校对活性。将诱变与生物物理研究和单分子前导链复制测定相结合,将这种活性追溯到 ε 中的一个新的 β 结合位点,该位点与 α 中的位点一起,在 DNA 合成的聚合模式下维持 αεθ-β2 复制酶的封闭状态。ε-β 相互作用是在进化过程中选择的,其强度较弱,因此适合于短暂破坏,以允许替代聚合酶和其他夹结合蛋白的进入,因此对精细调节复制酶在各种构象状态下在 DNA 模板上稳定性的蛋白质-蛋白质相互作用网络做出了重要贡献。