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噬菌体phi 29 DNA复制中的蛋白质-核酸相互作用

Protein-nucleic acid interactions in bacteriophage phi 29 DNA replication.

作者信息

Salas M, Freire R, Soengas M S, Esteban J A, Méndez J, Bravo A, Serrano M, Blasco M A, Lázaro J M, Blanco L

机构信息

Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Universidad Autónoma, Madrid, Spain.

出版信息

FEMS Microbiol Rev. 1995 Aug;17(1-2):73-82. doi: 10.1111/j.1574-6976.1995.tb00189.x.

Abstract

phi 29 DNA replication starts at both DNA ends by a protein priming mechanism. The formation of the terminal protein-dAMP initiation complex is directed by the second nucleotide from the 3' end of the template. The transition from protein-primed initiation to normal DNA elongation has been proposed to occur by a sliding-back mechanism that is necessary for maintaining the sequences at the phi 29 DNA ends. Structure-function studies have been carried out in the phi 29 DNA polymerase. By site-directed mutagenesis of amino acids conserved among distantly related DNA polymerases we have shown that the N-terminal domain of phi 29 DNA polymerase contains the 3'-5' exonuclease activity and the strand-displacement capacity, whereas the C-terminal domain contains the synthetic activities (protein-primed initiation and DNA polymerization). Viral protein p6 stimulates the initiation of phi 29 DNA replication. The structure of the protein p6-DNA complex has been determined, as well as the main signals at the phi 29 DNA ends recognized by protein p6. The DNA binding domain of protein p6 has been studied. The results indicate that an alpha-helical structure located in the N-terminal region of protein p6 is involved in DNA binding through the minor groove. The phi 29 protein p5 is the single-stranded DNA binding (SSB) protein involved in phi 29 DNA replication, by binding to the displaced single-stranded DNA (ssDNA) in the replication intermediates. In addition, protein p5 is able to unwind duplex DNA. The properties of the phi 29 SSB-ssDNA complex are described. Using the four viral proteins, terminal protein, DNA polymerase, protein p6 and the SSB protein, it was possible to amplify the 19,285-bp phi 29 DNA molecule by a factor of 4000 after 1 h of incubation at 30 degrees C. The infectivity of the in vitro amplified DNA was identical to that of phi 29 DNA obtained from virions.

摘要

phi 29 DNA复制通过蛋白质引发机制从DNA两端起始。末端蛋白-dAMP起始复合物的形成由模板3'端的第二个核苷酸引导。已提出从蛋白质引发起始到正常DNA延伸的转变通过一种回滑机制发生,这对于维持phi 29 DNA末端的序列是必要的。已对phi 29 DNA聚合酶进行了结构-功能研究。通过对远缘相关DNA聚合酶中保守氨基酸进行定点诱变,我们表明phi 29 DNA聚合酶的N端结构域具有3'-5'核酸外切酶活性和链置换能力,而C端结构域具有合成活性(蛋白质引发起始和DNA聚合)。病毒蛋白p6刺激phi 29 DNA复制的起始。已确定了蛋白p6-DNA复合物的结构以及蛋白p6识别的phi 29 DNA末端的主要信号。对蛋白p6的DNA结合结构域进行了研究。结果表明,位于蛋白p6 N端区域的α-螺旋结构通过小沟参与DNA结合。phi 29蛋白p5是参与phi 29 DNA复制的单链DNA结合(SSB)蛋白,通过与复制中间体中被置换的单链DNA(ssDNA)结合发挥作用。此外,蛋白p5能够解开双链DNA。描述了phi 29 SSB-ssDNA复合物的特性。使用四种病毒蛋白,末端蛋白、DNA聚合酶、蛋白p6和SSB蛋白,在30℃孵育1小时后,能够将19,285碱基对的phi 29 DNA分子扩增4000倍。体外扩增DNA的感染性与从病毒粒子获得的phi 29 DNA相同。

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