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噬菌体T7基因4解旋酶/引发酶的酸性羧基末端与T7 DNA聚合酶相互作用。

The acidic carboxyl terminus of the bacteriophage T7 gene 4 helicase/primase interacts with T7 DNA polymerase.

作者信息

Notarnicola S M, Mulcahy H L, Lee J, Richardson C 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. 1997 Jul 18;272(29):18425-33. doi: 10.1074/jbc.272.29.18425.

DOI:10.1074/jbc.272.29.18425
PMID:9218486
Abstract

The gene 4 proteins of bacteriophage T7 provide both primase and helicase activities at the replication fork. Efficient DNA replication requires that the functions of the gene 4 protein be coordinated with the movement of the T7 DNA polymerase. We show that a carboxyl-terminal domain of the gene 4 protein is required for interaction with T7 DNA polymerase during leading strand DNA synthesis. The carboxyl terminus of the gene 4 protein is highly acidic: of the 17 carboxyl-terminal amino acids 7 are negatively charged. Deletion of the coding region for these 17 residues results in a gene 4 protein that cannot support the growth of T7 phage. The purified mutant gene 4 protein has wild-type levels of both helicase and primase activities; however, DNA synthesis catalyzed by T7 DNA polymerase on a duplex DNA substrate is stimulated by this mutant protein to only about 5% of the level of synthesis obtained with wild-type protein. The mutant gene 4 protein can form hexamers and bind single-stranded DNA, but as determined by native PAGE analysis, the protein cannot form a stable complex with the DNA polymerase. The mutant gene 4 protein can prime DNA synthesis normally, indicating that for lagging strand synthesis a different set of helicase/primase-DNA polymerase interactions are involved. These findings have implications for the mechanisms coupling leading and lagging strand DNA synthesis at the T7 replication fork.

摘要

噬菌体T7的基因4蛋白在复制叉处兼具引发酶和解旋酶活性。高效的DNA复制要求基因4蛋白的功能与T7 DNA聚合酶的移动相协调。我们发现,在前导链DNA合成过程中,基因4蛋白的一个羧基末端结构域对于与T7 DNA聚合酶的相互作用是必需的。基因4蛋白的羧基末端具有高度酸性:在17个羧基末端氨基酸中,有7个带负电荷。缺失这17个残基的编码区域会导致产生一种无法支持T7噬菌体生长的基因4蛋白。纯化后的突变型基因4蛋白具有与野生型水平相当的解旋酶和引发酶活性;然而,T7 DNA聚合酶在双链DNA底物上催化的DNA合成仅被这种突变蛋白刺激到野生型蛋白所获得合成水平的约5%。突变型基因4蛋白可以形成六聚体并结合单链DNA,但通过非变性聚丙烯酰胺凝胶电泳分析确定,该蛋白无法与DNA聚合酶形成稳定的复合物。突变型基因4蛋白能够正常引发DNA合成,这表明对于滞后链合成,涉及一组不同的解旋酶/引发酶-DNA聚合酶相互作用。这些发现对T7复制叉处前导链和滞后链DNA合成的偶联机制具有启示意义。

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J Biol Chem. 1997 Jul 18;272(29):18425-33. doi: 10.1074/jbc.272.29.18425.
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