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噬菌体T7基因4解旋酶-引物酶的C末端残基协调解旋酶和DNA聚合酶活性。

The C-terminal residues of bacteriophage T7 gene 4 helicase-primase coordinate helicase and DNA polymerase activities.

作者信息

Lee Seung-Joo, Marintcheva Boriana, Hamdan Samir M, Richardson Charles C

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Biol Chem. 2006 Sep 1;281(35):25841-9. doi: 10.1074/jbc.M604602200. Epub 2006 Jun 28.

Abstract

The gene 4 protein of bacteriophage T7 plays a central role in DNA replication by providing both helicase and primase activities. The C-terminal helicase domain is not only responsible for DNA-dependent dTTP hydrolysis, translocation, and DNA unwinding, but it also interacts with T7 DNA polymerase to coordinate helicase and polymerase activities. The C-terminal 17 residues of gene 4 protein are critical for its interaction with the T7 DNA polymerase/thioredoxin complex. This C terminus is highly acidic; replacement of these residues with uncharged residues leads to a loss of interaction with T7 DNA polymerase/thioredoxin and an increase in oligomerization of the gene 4 protein. Such an alteration on the C terminus results in a reduced efficiency in strand displacement DNA synthesis catalyzed by gene 4 protein and T7 DNA polymerase/thioredoxin. Replacement of the C-terminal amino acid, phenylalanine, with non-aromatic residues also leads to a loss of interaction of gene 4 protein with T7 DNA polymerase/thioredoxin. However, neither of these modifications of the C terminus affects helicase and primase activities. A chimeric gene 4 protein containing the acidic C terminus of the T7 gene 2.5 single-stranded DNA-binding protein is more active in strand displacement synthesis. Gene 4 hexamers containing even one subunit of a defective C terminus are defective in their interaction with T7 DNA polymerase.

摘要

噬菌体T7的基因4蛋白通过提供解旋酶和引发酶活性在DNA复制中起核心作用。C端解旋酶结构域不仅负责依赖DNA的dTTP水解、移位和DNA解旋,还与T7 DNA聚合酶相互作用以协调解旋酶和聚合酶活性。基因4蛋白的C端17个残基对其与T7 DNA聚合酶/硫氧还蛋白复合物的相互作用至关重要。这个C末端是高度酸性的;用不带电荷的残基取代这些残基会导致与T7 DNA聚合酶/硫氧还蛋白的相互作用丧失以及基因4蛋白的寡聚化增加。C末端的这种改变导致基因4蛋白和T7 DNA聚合酶/硫氧还蛋白催化的链置换DNA合成效率降低。用非芳香族残基取代C末端氨基酸苯丙氨酸也会导致基因4蛋白与T7 DNA聚合酶/硫氧还蛋白的相互作用丧失。然而,C末端的这些修饰都不影响解旋酶和引发酶活性。含有T7基因2.5单链DNA结合蛋白酸性C末端的嵌合基因4蛋白在链置换合成中更具活性。即使含有一个缺陷C末端亚基的基因4六聚体在与T7 DNA聚合酶的相互作用中也是有缺陷 的。

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