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染色体复制机器的组装:一个全酶颗粒中包含两种DNA聚合酶、一个夹子加载器和滑动夹。III. 两种聚合酶与夹子加载器之间的界面。

Assembly of a chromosomal replication machine: two DNA polymerases, a clamp loader, and sliding clamps in one holoenzyme particle. III. Interface between two polymerases and the clamp loader.

作者信息

Onrust R, Finkelstein J, Turner J, Naktinis V, O'Donnell M

机构信息

Microbiology Department, Cornell University Medical College, New York, New York 10021, USA.

出版信息

J Biol Chem. 1995 Jun 2;270(22):13366-77. doi: 10.1074/jbc.270.22.13366.

Abstract

The nine-subunit DNA polymerase (Pol) III* coupled to its beta sliding clamp is a rapid and highly processive replicating machine. The multiple subunits are needed for the complicated task of duplicating the Escherichia coli chromosome. In this report, Pol III* was constituted from individual pure proteins, and its structure was studied. Constitution of the Pol III* particle requires an ordered addition of the subunits, and the final structure contains 14 polypeptides in the ratio alpha 2 epsilon 2 theta 2 tau 2 gamma 2 delta 1 delta' 1 chi 1 psi 1. The structure can be summarized as being composed of two core polymerases (alpha epsilon theta) held together by a dimer of tau and one gamma complex clamp loader (gamma 2 delta 1 delta' 1 chi 1 psi 1) for loading beta onto DNA. At the center of the structure, the related tau and gamma subunits form a heterotetramer upon which the two core polymerases and clamp loader proteins assemble. The single copy nature of the delta, delta', chi, and psi subunits confers a structural asymmetry with respect to the two polymerases, presumably for the different functions of replicating the leading and lagging strands.

摘要

与β滑动夹钳偶联的九亚基DNA聚合酶(Pol)III是一种快速且高度持续合成的复制机器。大肠杆菌染色体复制这项复杂任务需要多个亚基参与。在本报告中,Pol III由单个纯蛋白构建而成,并对其结构进行了研究。构建Pol III*颗粒需要按顺序添加亚基,最终结构包含14种多肽,其比例为α2ε2θ2τ2γ2δ1δ'1χ1ψ1。该结构可概括为由两个核心聚合酶(αεθ)通过τ二聚体结合在一起,以及一个γ复合物夹钳装载器(γ2δ1δ'1χ1ψ1)用于将β装载到DNA上。在结构中心,相关的τ和γ亚基形成一个异源四聚体,两个核心聚合酶和夹钳装载蛋白组装在其上。δ、δ'、χ和ψ亚基的单拷贝性质赋予了相对于两个聚合酶的结构不对称性,推测这与前导链和滞后链复制的不同功能有关。

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