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θ 亚基稳定大肠杆菌 DNA 聚合酶 III ε 亚基有利于 Pol III 催化核心的体内组装。

Stabilization of the Escherichia coli DNA polymerase III ε subunit by the θ subunit favors in vivo assembly of the Pol III catalytic core.

机构信息

Department of Industrial Chemistry, University of Bologna, Viale Risorgimento 4, 40136 Bologna, Italy.

出版信息

Arch Biochem Biophys. 2012 Jul 15;523(2):135-43. doi: 10.1016/j.abb.2012.04.013. Epub 2012 Apr 22.

Abstract

Escherichia coli DNA polymerase III holoenzyme (HE) contains a core polymerase consisting of three subunits: α (polymerase), ε (3'-5' exonuclease), and θ. Genetic experiments suggested that θ subunit stabilizes the intrinsically labile ε subunit and, furthermore, that θ might affect the cellular amounts of Pol III core and HE. Here, we provide biochemical evidence supporting this model by analyzing the amounts of the relevant proteins. First, we show that a ΔholE strain (lacking θ subunit) displays reduced amounts of free ε. We also demonstrate the existence of a dimer of ε, which may be involved in the stabilization of the protein. Second, θ, when overexpressed, dissociates the ε dimer and significantly increases the amount of Pol III core. The stability of ε also depends on cellular chaperones, including DnaK. Here, we report that: (i) temperature shift-up of ΔdnaK strains leads to rapid depletion of ε, and (ii) overproduction of θ overcomes both the depletion of ε and the temperature sensitivity of the strain. Overall, our data suggest that ε is a critical factor in the assembly of Pol III core, and that this is role is strongly influenced by the θ subunit through its prevention of ε degradation.

摘要

大肠杆菌 DNA 聚合酶 III 全酶 (HE) 包含一个由三个亚基组成的核心聚合酶:α(聚合酶)、ε(3'-5' 外切酶)和 θ。遗传实验表明,θ 亚基稳定了内在不稳定的 ε 亚基,此外,θ 可能会影响 Pol III 核心和 HE 的细胞数量。在这里,我们通过分析相关蛋白的含量提供了支持该模型的生化证据。首先,我们表明缺乏 θ 亚基的ΔholE 菌株(缺乏 θ 亚基)显示出游离 ε 的含量减少。我们还证明了 ε 的二聚体的存在,这可能参与了蛋白质的稳定。其次,当θ过表达时,它会使 ε 二聚体解离,并显著增加 Pol III 核心的含量。ε 的稳定性还取决于包括 DnaK 在内的细胞伴侣。在这里,我们报告:(i)温度上升会导致ΔdnaK 菌株中 ε 的快速耗尽,(ii)θ 的过表达克服了 ε 的耗竭和菌株的温度敏感性。总体而言,我们的数据表明 ε 是 Pol III 核心组装的关键因素,而这种作用通过其防止 ε 降解而受到 θ 亚基的强烈影响。

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