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从大肠杆菌dnaE173突变体中纯化的DNA聚合酶III全酶催化的超持续和较慢的DNA链延伸。

Hyper-processive and slower DNA chain elongation catalysed by DNA polymerase III holoenzyme purified from the dnaE173 mutator mutant of Escherichia coli.

作者信息

Sugaya Yutaka, Ihara Keiichi, Masuda Yuji, Ohtsubo Eiichi, Maki Hisaji

机构信息

Department of Molecular Biology, Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara 630-0101, Japan.

出版信息

Genes Cells. 2002 Apr;7(4):385-99. doi: 10.1046/j.1365-2443.2002.00527.x.

Abstract

BACKGROUND

A strong mutator mutation, dnaE173, leads to a Glu612 --> Lys amino acid change in the alpha subunit of Escherichia coli DNA polymerase III (PolIII) holoenzyme and abolishes the proofreading function of the replicative enzyme without affecting the 3' --> 5' exonuclease activity of the epsilon subunit. The dnaE173 mutator is unique in its ability to induce sequence-substitution mutations, suggesting that an unknown function of the alpha subunit is hampered by the dnaE173 mutation.

RESULTS

A PolIII holoenzyme reconstituted from dnaE173 PolIII* (DNA polymerase III holoenzyme lacking the beta clamp subunit) and the beta subunit showed a strong resistance to replication-pausing on the template DNA and readily promoted strand-displacement DNA synthesis. Unlike wild-type PolIII*, dnaE173 PolIII* was able to catalyse highly processive DNA synthesis without the aid of the beta-clamp subunit. The rate of chain elongation by the dnaE173 holoenzyme was reduced to one-third of that determined for the wild-type enzyme. In contrast, an exonuclease-deficient PolIII holoenzyme was vastly prone to pausing, but had the same rate of chain elongation as the wild-type.

CONCLUSIONS

The hyper-processivity and slower DNA chain elongation rate of the dnaE173 holoenzyme are distinct effects caused by the dnaE173 mutation and are likely to be involved in the sequence-substitution mutagenesis. A link between the proofreading and chain elongation processes was suggested.

摘要

背景

一种强大的诱变突变体dnaE173,导致大肠杆菌DNA聚合酶III(PolIII)全酶α亚基中的谷氨酸612突变为赖氨酸,消除了复制酶的校对功能,而不影响ε亚基的3'→5'核酸外切酶活性。dnaE173诱变剂在诱导序列替代突变方面具有独特能力,这表明α亚基的一种未知功能因dnaE173突变而受到阻碍。

结果

由dnaE173 PolIII*(缺乏β钳夹亚基的DNA聚合酶III全酶)和β亚基重构的PolIII全酶对模板DNA上的复制暂停表现出强大抗性,并易于促进链置换DNA合成。与野生型PolIII不同,dnaE173 PolIII能够在不借助β钳夹亚基的情况下催化高度持续的DNA合成。dnaE173全酶的链延伸速率降至野生型酶的三分之一。相比之下,缺乏核酸外切酶活性的PolIII全酶极易出现暂停,但链延伸速率与野生型相同。

结论

dnaE173全酶的超持续合成能力和较慢的DNA链延伸速率是由dnaE173突变引起的不同效应,可能与序列替代诱变有关。这表明校对和链延伸过程之间存在联系。

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