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噬菌体T7的单链DNA结合蛋白和DNA解旋酶介导同源DNA链交换。

Single-stranded DNA binding protein and DNA helicase of bacteriophage T7 mediate homologous DNA strand exchange.

作者信息

Kong D, Richardson C C

机构信息

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

出版信息

EMBO J. 1996 Apr 15;15(8):2010-9.

Abstract

Two proteins encoded by bacteriophage T7, the gene 2.5 single-stranded DNA binding protein and the gene 4 helicase, mediate homologous DNA strand exchange. Gene 2.5 protein stimulates homologous base pairing of two DNA molecules containing complementary single-stranded regions. The formation of a joint molecule consisting of circular, single-stranded M13 DNA, annealed to homologous linear, duplex DNA having 3'- or 5'-single-stranded termini of approximately 100 nucleotides requires stoichiometric amounts of gene 2.5 protein. In the presence of gene 4 helicase, strand transfer proceeds at a rate of > 120 nucleotides/s in a polar 5' to 3' direction with respect to the invading strand, resulting in the production of circular duplex M13 DNA. Strand transfer is coupled to the hydrolysis of a nucleoside 5'-triphosphate. The reaction is dependent on specific interactions between gene 2.5 protein and gene 4 protein.

摘要

噬菌体T7编码的两种蛋白质,即基因2.5单链DNA结合蛋白和基因4解旋酶,介导同源DNA链交换。基因2.5蛋白刺激含有互补单链区域的两个DNA分子的同源碱基配对。由环状单链M13 DNA退火形成的连接分子,与具有约100个核苷酸的3'-或5'-单链末端的同源线性双链DNA结合,需要化学计量的基因2.5蛋白。在基因4解旋酶存在的情况下,链转移以相对于侵入链的5'至3'极性方向以> 120个核苷酸/秒的速率进行,从而产生环状双链M13 DNA。链转移与核苷5'-三磷酸的水解偶联。该反应取决于基因2.5蛋白和基因4蛋白之间的特异性相互作用。

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